Global Military Robotics Market 2020: Analysis Of Sales, Overview, Segmentation And Growth Rate To 2027 – Owned

Trusted Business Insights answers what are the scenarios for growth and recovery and whether there will be any lasting structural impact from the unfolding crisis for the Military Robotics market.

Trusted Business Insights presents an updated and Latest Study on Military Robotics Market 2019-2029. The report contains market predictions related to market size, revenue, production, CAGR, Consumption, gross margin, price, and other substantial factors. While emphasizing the key driving and restraining forces for this market, the report also offers a complete study of the future trends and developments of the market.The report further elaborates on the micro and macroeconomic aspects including the socio-political landscape that is anticipated to shape the demand of the Military Robotics market during the forecast period (2019-2029).It also examines the role of the leading market players involved in the industry including their corporate overview, financial summary, and SWOT analysis.

Get Sample Copy of this Report @ Military Robotics Market by Type (Land, Marine, and Airborne), by Payload (Sensors, Cameras, LCD Screens, Weapons, Radar, and Others), by Application (Warfield Operations, Firing, Image Capturing and Surveillance, Metal/Mine Detections, Pick and Place, and Others), and by End-User (Armed Forces and Homeland Securities)-Global Industry Analytics, COVID-19 Business Impact, and Trends, 20202029

Abstract

The report encloses the forecast estimates and historical data for military robotics market on a global and regional level. The study provides the data from 2015 to 2018 and for the forecast period from 2019 to 2027 based on revenue (USD Billion). The study also provides the impact and descriptive analysis of major drivers, restraints, opportunities, and challenges of the global military robotics market.

The study also offers the market attractiveness analysis and Porters Five Forces model analysis to gauge the competitive landscape of major vendors of the global military robotics market. This comprehensive study also provides a detailed analysis and an overview of each segment included in the study.

The report analyzes the major type, payload, application, end-user, and region of the global military robotics market. All the segments have been analyzed based on present and future trends and the market is estimated from 2019 to 2027. The regional segment includes the historic and forecast demand for North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa.

Some key players operating in the global military robotics market include BAE Systems, Israel Aerospace Industries, Northrop Grumman, Thales Group, Lockheed Martin, Boston Dynamics, General Dynamics, SAAB, Turkish Aerospace Industries, Endeavor Robotics, QinetiQ Group, and Roboteam.

This report segments the global military robotics market into:

Global Military Robotics Market: Type Analysis

LandMarineAirborne

Global Military Robotics Market: Payload Analysis

SensorsCamerasLCD ScreensWeaponsRadarOthers

Global Military Robotics Market: Application Analysis

Warfield OperationsFiringImage Capturing and SurveillanceMetal/Mine detectionsPick and PlaceOthers

Global Military Robotics Market: End-User Analysis

Armed ForcesHomeland Securities

Global Military Robotics Market: Regional Analysis

North America

The U.S.

Europe

UKFranceGermany

Asia Pacific

ChinaJapanIndia

Latin America

Brazil

Middle East and Africa

Quick Read Table of Contents of this Report @ Military Robotics Market by Type (Land, Marine, and Airborne), by Payload (Sensors, Cameras, LCD Screens, Weapons, Radar, and Others), by Application (Warfield Operations, Firing, Image Capturing and Surveillance, Metal/Mine Detections, Pick and Place, and Others), and by End-User (Armed Forces and Homeland Securities)-Global Industry Analytics, COVID-19 Business Impact, and Trends, 20202029

Trusted Business InsightsShelly ArnoldMedia & Marketing ExecutiveEmail Me For Any ClarificationsConnect on LinkedInClick to follow Trusted Business Insights LinkedIn for Market Data and Updates.US: +1 646 568 9797UK: +44 330 808 0580

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Global Military Robotics Market 2020: Analysis Of Sales, Overview, Segmentation And Growth Rate To 2027 - Owned

Industrial Robotics Market Anticipated To Witness High Growth In The Near Future – Owned

Industrial Robotics Market: Introduction

Industrial robots have a vital role to play in automation of industries, as several key operations are taken care of by industrial robots in several industries. Economic development in various countries offers promising growth opportunities to the global industrial robotics market. Rapid expansion of e-Commerce activities coupled with phenomenal growth of automotive and electronics industries is an added impetus to the global industrial robotics market.

Some of the renowned market players analyzed in the report on the global industrial robotics market are Yaskawa Motoman Robotics, Kawasaki Heavy Industries, Denso Corporation, Toshiba Machine Co., Ltd., Fanuc Robotics, and KUKA Robotics. The global industrial robotics market is projected to reach US$ 297 Bn by 2027. The market is likely to grow at a CAGR of ~9% from 2019 to 2027.

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Growing Demand for Collaborative Robot to Drive Industrial Robotics Market

Collaborative robots are built to work alongside human beings through interaction in a shared workspace. Collaborative robots have the ability to automate the work easily and hence, are used in variety of applications such as packaging, pick and place, screw driving, assembly, lab testing, and quality inspection. Furthermore, collaborative robots help companies to enhance the production output with high levels of work safety, as these robots can perform repetitive work at a faster pace. Demand for collaborative robots is continuously on the rise in different industry verticals including retail, healthcare, automotive manufacturing, and several others, owing to their numerous benefits and associated applications. Several manufacturers operate in the industrial robotics domain such as Universal Robots, KUKA AG, and Franka Emika GmbH, who offer a wide variety of collaborative robots for various industries.

Extensive Deployment of Industrial Robots in Manufacturing Units Drives Market in North America

Based on region, the global industrial robotics market has been segmented into Latin America, Middle East & Africa, Asia Pacific, Europe, and North America. Regional segmentations are likely to facilitate better understanding of market dynamics at play in each of the regions during the forecast period.

According to the findings of the Association for Advancing Automation, around 27,294 robots were ordered in the first nine months of 2019. These robots were valued at around US$ 1.473 Bn. North America is likely to lead the global industrial robotics market in the coming years. Substantial reliance of North American manufacturing units on advanced and innovative technological solutions to generate high quality output at reduced cost is fueling the market. Increased implementation of advanced software programs to stay ahead of competition is responsible for growth of the industrial robotics market in North America.

Modern manufacturing facilities in North America substantially depend on new innovative technologies to produce higher quality products at high speed and reduced costs. Manufacturing facilities are implementing more intelligent software and hardware to survive in the current competitive scenario.

Likewise, Europe is also expected to account for a large share of the market. In 2017, around 170,000 robots participated in the production process of the automotive industry in Europe. Such high levels of robotic participation is a manifestation of the market prominence in the region.

According to TMR analysts, in terms of density of industrial robots, South Korea is estimated to retain its leading position during the assessment period.

High Cost of Human Labor to Bolster Demand for Industrial Robots

The expansion of the global industrial robotics market is stimulated by heightened activities in the factory automation sector. The global industrial robotics market is poised for considerable growth in the near future with the growing human-machine interaction together with cloud technology improving control of hardware.

High cost of deploying manual labor coupled with the cost incurred on health insurance, paid leaves, compensations, training, conferences, and promotions is a financial burden on companies. These factors that emerge with the employment of human labor are expected to pave the way for large-scale deployment of industrial robotics in the coming years. Unlike industrial robots, human labor is incapable of working in adverse conditions or in high-risk zones. Day-to-day completion of the same tasks leaves workers with a mutinous and dull feeling, which lowers productivity. More manufacturers are therefore utilizing industrial robots in view of these negative aspects of human labor.

Furthermore, rapid growth in semiconductor and electronics industries has propelled the growth of the market. Both the industries are massive demand generators for industrial robotics.

Advent of artificial intelligence and digitization has made a marked difference in the performance of industrial robots with increased output and high quality. Shift in the automotive industry toward electric and autonomous automotive is generating considerable growth opportunities for the global industrial robotics market. The automotive manufacturing industry is another leading demand generator for industrial robots.

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Global Industrial Robotics Market: Segmentation

Industrial Robotics Market, by Type

Industrial Robotics Market, by Industry

Industrial Robotics Market, by Function

Industrial Robotics Market, by Region

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Industrial Robotics Market Anticipated To Witness High Growth In The Near Future - Owned

Impact Of Covid-19 on Industrial Welding Robots Market 2020 Industry Challenges, Business Overview and Forecast Research Study 2026 – Owned

The global Industrial Welding Robots market focuses on encompassing major statistical evidence for the Industrial Welding Robots industry as it offers our readers a value addition on guiding them in encountering the obstacles surrounding the market. A comprehensive addition of several factors such as global distribution, manufacturers, market size, and market factors that affect the global contributions are reported in the study. In addition the Industrial Welding Robots study also shifts its attention with an in-depth competitive landscape, defined growth opportunities, market share coupled with product type and applications, key companies responsible for the production, and utilized strategies are also marked.

This intelligence and 2026 forecasts Industrial Welding Robots industry report further exhibits a pattern of analyzing previous data sources gathered from reliable sources and sets a precedented growth trajectory for the Industrial Welding Robots market. The report also focuses on a comprehensive market revenue streams along with growth patterns, analytics focused on market trends, and the overall volume of the market.

Moreover, the Industrial Welding Robots report describes the market division based on various parameters and attributes that are based on geographical distribution, product types, applications, etc. The market segmentation clarifies further regional distribution for the Industrial Welding Robots market, business trends, potential revenue sources, and upcoming market opportunities.

Download PDF Sample of Industrial Welding Robots Market report @ https://hongchunresearch.com/request-a-sample/51074

Key players in the global Industrial Welding Robots market covered in Chapter 4:,Rethink Robotics,Fanuc,Yaskawa,Nachi Robotic Systems,Adept Technology,EpsonRobotics,Mitsubishi Electric,TM Robotics,Kawasaki Robotics,Universal Robots,ABB,Apex Automation and Robotics,Denso Robotics,KUKA

In Chapter 11 and 13.3, on the basis of types, the Industrial Welding Robots market from 2015 to 2026 is primarily split into:,1-axis Industrial Welding Robots,2-axis Industrial Welding Robots,3-axis Industrial Welding Robots

In Chapter 12 and 13.4, on the basis of applications, the Industrial Welding Robots market from 2015 to 2026 covers:,Automotive,Ocean Engineering,Equipment Processing,Others

Geographically, the detailed analysis of consumption, revenue, market share and growth rate, historic and forecast (2015-2026) of the following regions are covered in Chapter 5, 6, 7, 8, 9, 10, 13:,North America (Covered in Chapter 6 and 13),United States,Canada,Mexico,Europe (Covered in Chapter 7 and 13),Germany,UK,France,Italy,Spain,Russia,Others,Asia-Pacific (Covered in Chapter 8 and 13),China,Japan,South Korea,Australia,India,Southeast Asia,Others,Middle East and Africa (Covered in Chapter 9 and 13),Saudi Arabia,UAE,Egypt,Nigeria,South Africa,Others,South America (Covered in Chapter 10 and 13),Brazil,Argentina,Columbia,Chile,Others

The Industrial Welding Robots market study further highlights the segmentation of the Industrial Welding Robots industry on a global distribution. The report focuses on regions of North America, Europe, Asia, and the Rest of the World in terms of developing business trends, preferred market channels, investment feasibility, long term investments, and environmental analysis. The Industrial Welding Robots report also calls attention to investigate product capacity, product price, profit streams, supply to demand ratio, production and market growth rate, and a projected growth forecast.

In addition, the Industrial Welding Robots market study also covers several factors such as market status, key market trends, growth forecast, and growth opportunities. Furthermore, we analyze the challenges faced by the Industrial Welding Robots market in terms of global and regional basis. The study also encompasses a number of opportunities and emerging trends which are considered by considering their impact on the global scale in acquiring a majority of the market share.

The study encompasses a variety of analytical resources such as SWOT analysis and Porters Five Forces analysis coupled with primary and secondary research methodologies. It covers all the bases surrounding the Industrial Welding Robots industry as it explores the competitive nature of the market complete with a regional analysis.

Brief about Industrial Welding Robots Market Report with [emailprotected] https://hongchunresearch.com/report/industrial-welding-robots-market-51074

Some Point of Table of Content:

Chapter One: Report Overview

Chapter Two: Global Market Growth Trends

Chapter Three: Value Chain of Industrial Welding Robots Market

Chapter Four: Players Profiles

Chapter Five: Global Industrial Welding Robots Market Analysis by Regions

Chapter Six: North America Industrial Welding Robots Market Analysis by Countries

Chapter Seven: Europe Industrial Welding Robots Market Analysis by Countries

Chapter Eight: Asia-Pacific Industrial Welding Robots Market Analysis by Countries

Chapter Nine: Middle East and Africa Industrial Welding Robots Market Analysis by Countries

Chapter Ten: South America Industrial Welding Robots Market Analysis by Countries

Chapter Eleven: Global Industrial Welding Robots Market Segment by Types

Chapter Twelve: Global Industrial Welding Robots Market Segment by Applications12.1 Global Industrial Welding Robots Sales, Revenue and Market Share by Applications (2015-2020)12.1.1 Global Industrial Welding Robots Sales and Market Share by Applications (2015-2020)12.1.2 Global Industrial Welding Robots Revenue and Market Share by Applications (2015-2020)12.2 Automotive Sales, Revenue and Growth Rate (2015-2020)12.3 Ocean Engineering Sales, Revenue and Growth Rate (2015-2020)12.4 Equipment Processing Sales, Revenue and Growth Rate (2015-2020)12.5 Others Sales, Revenue and Growth Rate (2015-2020)

Chapter Thirteen: Industrial Welding Robots Market Forecast by Regions (2020-2026) continued

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List of tablesList of Tables and FiguresTable Global Industrial Welding Robots Market Size Growth Rate by Type (2020-2026)Figure Global Industrial Welding Robots Market Share by Type in 2019 & 2026Figure 1-axis Industrial Welding Robots FeaturesFigure 2-axis Industrial Welding Robots FeaturesFigure 3-axis Industrial Welding Robots FeaturesTable Global Industrial Welding Robots Market Size Growth by Application (2020-2026)Figure Global Industrial Welding Robots Market Share by Application in 2019 & 2026Figure Automotive DescriptionFigure Ocean Engineering DescriptionFigure Equipment Processing DescriptionFigure Others DescriptionFigure Global COVID-19 Status OverviewTable Influence of COVID-19 Outbreak on Industrial Welding Robots Industry DevelopmentTable SWOT AnalysisFigure Porters Five Forces AnalysisFigure Global Industrial Welding Robots Market Size and Growth Rate 2015-2026Table Industry NewsTable Industry PoliciesFigure Value Chain Status of Industrial Welding RobotsFigure Production Process of Industrial Welding RobotsFigure Manufacturing Cost Structure of Industrial Welding RobotsFigure Major Company Analysis (by Business Distribution Base, by Product Type)Table Downstream Major Customer Analysis (by Region)Table Rethink Robotics ProfileTable Rethink Robotics Production, Value, Price, Gross Margin 2015-2020Table Fanuc ProfileTable Fanuc Production, Value, Price, Gross Margin 2015-2020Table Yaskawa ProfileTable Yaskawa Production, Value, Price, Gross Margin 2015-2020Table Nachi Robotic Systems ProfileTable Nachi Robotic Systems Production, Value, Price, Gross Margin 2015-2020Table Adept Technology ProfileTable Adept Technology Production, Value, Price, Gross Margin 2015-2020Table EpsonRobotics ProfileTable EpsonRobotics Production, Value, Price, Gross Margin 2015-2020Table Mitsubishi Electric ProfileTable Mitsubishi Electric Production, Value, Price, Gross Margin 2015-2020Table TM Robotics ProfileTable TM Robotics Production, Value, Price, Gross Margin 2015-2020Table Kawasaki Robotics ProfileTable Kawasaki Robotics Production, Value, Price, Gross Margin 2015-2020Table Universal Robots ProfileTable Universal Robots Production, Value, Price, Gross Margin 2015-2020Table ABB ProfileTable ABB Production, Value, Price, Gross Margin 2015-2020Table Apex Automation and Robotics ProfileTable Apex Automation and Robotics Production, Value, Price, Gross Margin 2015-2020Table Denso Robotics ProfileTable Denso Robotics Production, Value, Price, Gross Margin 2015-2020Table KUKA ProfileTable KUKA Production, Value, Price, Gross Margin 2015-2020Figure Global Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Global Industrial Welding Robots Revenue ($) and Growth (2015-2020)Table Global Industrial Welding Robots Sales by Regions (2015-2020)Table Global Industrial Welding Robots Sales Market Share by Regions (2015-2020)Table Global Industrial Welding Robots Revenue ($) by Regions (2015-2020)Table Global Industrial Welding Robots Revenue Market Share by Regions (2015-2020)Table Global Industrial Welding Robots Revenue Market Share by Regions in 2015Table Global Industrial Welding Robots Revenue Market Share by Regions in 2019Figure North America Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Europe Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Asia-Pacific Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Middle East and Africa Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure South America Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure North America Industrial Welding Robots Revenue ($) and Growth (2015-2020)Table North America Industrial Welding Robots Sales by Countries (2015-2020)Table North America Industrial Welding Robots Sales Market Share by Countries (2015-2020)Figure North America Industrial Welding Robots Sales Market Share by Countries in 2015Figure North America Industrial Welding Robots Sales Market Share by Countries in 2019Table North America Industrial Welding Robots Revenue ($) by Countries (2015-2020)Table North America Industrial Welding Robots Revenue Market Share by Countries (2015-2020)Figure North America Industrial Welding Robots Revenue Market Share by Countries in 2015Figure North America Industrial Welding Robots Revenue Market Share by Countries in 2019Figure United States Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Canada Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Mexico Industrial Welding Robots Sales and Growth (2015-2020)Figure Europe Industrial Welding Robots Revenue ($) Growth (2015-2020)Table Europe Industrial Welding Robots Sales by Countries (2015-2020)Table Europe Industrial Welding Robots Sales Market Share by Countries (2015-2020)Figure Europe Industrial Welding Robots Sales Market Share by Countries in 2015Figure Europe Industrial Welding Robots Sales Market Share by Countries in 2019Table Europe Industrial Welding Robots Revenue ($) by Countries (2015-2020)Table Europe Industrial Welding Robots Revenue Market Share by Countries (2015-2020)Figure Europe Industrial Welding Robots Revenue Market Share by Countries in 2015Figure Europe Industrial Welding Robots Revenue Market Share by Countries in 2019Figure Germany Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure UK Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure France Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Italy Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Spain Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Russia Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Asia-Pacific Industrial Welding Robots Revenue ($) and Growth (2015-2020)Table Asia-Pacific Industrial Welding Robots Sales by Countries (2015-2020)Table Asia-Pacific Industrial Welding Robots Sales Market Share by Countries (2015-2020)Figure Asia-Pacific Industrial Welding Robots Sales Market Share by Countries in 2015Figure Asia-Pacific Industrial Welding Robots Sales Market Share by Countries in 2019Table Asia-Pacific Industrial Welding Robots Revenue ($) by Countries (2015-2020)Table Asia-Pacific Industrial Welding Robots Revenue Market Share by Countries (2015-2020)Figure Asia-Pacific Industrial Welding Robots Revenue Market Share by Countries in 2015Figure Asia-Pacific Industrial Welding Robots Revenue Market Share by Countries in 2019Figure China Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Japan Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure South Korea Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Australia Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure India Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Southeast Asia Industrial Welding Robots Sales and Growth Rate (2015-2020)Figure Middle East and Africa Industrial Welding Robots Revenue ($) and Growth (2015-2020) continued

About HongChun Research:HongChun Research main aim is to assist our clients in order to give a detailed perspective on the current market trends and build long-lasting connections with our clientele. Our studies are designed to provide solid quantitative facts combined with strategic industrial insights that are acquired from proprietary sources and an in-house model.

Contact Details:Jennifer GrayManager Global Sales+ 852 8170 0792[emailprotected]

NOTE: Our report does take into account the impact of coronavirus pandemic and dedicates qualitative as well as quantitative sections of information within the report that emphasizes the impact of COVID-19.

As this pandemic is ongoing and leading to dynamic shifts in stocks and businesses worldwide, we take into account the current condition and forecast the market data taking into consideration the micro and macroeconomic factors that will be affected by the pandemic.

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Impact Of Covid-19 on Industrial Welding Robots Market 2020 Industry Challenges, Business Overview and Forecast Research Study 2026 - Owned

Robots Everywhere: Machines that grow, cook, and serve food – Digital Trends

The cultivation and production of food are what allowed humans to progress from tribes of hunters/gatherers to be able to develop settlements and cities. Planting, growing, harvesting, and preparing food is the basis of our modern civilizations. Now our abilities to do all of these tasks have progressed so far that many of these steps can be done by robots and machines. So what does the future of robotics look like when it intersects with food production? We take a look at the three main areas in which robots are interacting with the process: During the farming stage, during the processing stage, and during the cooking and serving stage.

When it comes to farming and growing our crops, huge advancements in both hardware and software technologies have allowed farmers to use more and more autonomous machines. Companies like John Deere have developed tractors that run without human involvement, using GPS, camera technology, and myriad sensors to help them tend to each individual plant in their field, from planting to fertilizing to harvesting. This allows farmers to get more done with less manpower.

When it comes to food processing, using machines and automated robots is nothing new. Many of us have seen footage on all sorts of food plants where various machines work to process and package everything from fruit to cake. Breakthroughs in technology have allowed autonomous machines to move beyond simple packaging to being able to individually process complex items like removing bones from fish fillets using various sensors and cameras, and then removing the bones with a water jet spray all in a manner of seconds.

But what about food cooking and serving? Humans still play the biggest role in the preparation and serving of food. Cooking requires a huge amount of nuance, dexterity, and learning, and while robots arent quite up to speed with dealing with the complexities of cooking, they are making quite the leap forward. There are machines that can cook omelets, make stir fry, flip burgers, and more, using advanced sensors, cameras, temperature gauges, and machine learning.

The idea in all of this is not to replace human workers but to make the process more efficient and cost-effective. By allowing robots and automated machines to work alongside us at every step of the process can result in making food cheaper, healthier, and more accessible to everyone.

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Robots Everywhere: Machines that grow, cook, and serve food - Digital Trends

What Organisational Changes are Required to Succeed with Robotics Process Automation? – Analytics Insight

What Organisational Changes are Required to Succeed with Robotics Process Automation?

Ever wondered what makes an RPA solution fall short of its potential? Implementation complexity may just be the answer!

Robotic Process Automation (RPA) is the buzzword that has caught business attention and is the new buzzword, that enterprises have embraced. To make automation successful, enterprises need to make changes in their vision and strategy. RPA is more than just automation and replacing people with technology rather it involves process design which must be the core of the business strategy.

RPA mitigates rule-based processes to automate it resulting in tremendous process improvement that reduces process costs by nearly 80 percent but only when the right capabilities and teams are put in place. RPA leaders tend to overestimate the speed of RPA implementation, which may lead to difficulties handling resources, managing expectations, and capturing targeted ROIs.

The need of the hour is prudent leaders who have a clear vision of the future that comes with realistic expectations based on a deep understanding of technology. RPA leaders must distinguish wins from full-scale RPA implementations. This helps in keeping teams motivated by allocating resources based on need.

Businesses have typically turned on to third-party service providers that develop bots, but may fall back in training internal employees who are charged with crucial maintenance and solution upgrades. This makes employees who are not familiar with code, process design, or assumptions for effective functioning. Besides, there needs to be a deliberate and clear knowledge transfer between maintenance teams and bot developers. Costs of neglecting may run high since teams spend more time on bot maintenance which means realising fewer-than-anticipated benefits from the deployed bots.

Many enterprises select members of their RPA team based on domain knowledge and their technical prowess. They underestimate the need for the RPA team to work with other domains of the organization. Making sure the project is in full alignment with IT requires team members who meet IT expectations on a regular basis. This responsibility might be best delegated to someone who has deep existing relationships within the enterprise coupled with management skills than to someone whose expertise is technology.

Similarly, on the business side, an RPA team must go beyond just producing bots for the business to effectively address business concerns around change-management efforts and service level agreements (SLAs). These translators track bot performance against business goals to communicate additional requirements to the RPA teams for a smooth transition across enterprises.

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Kamalika Some is an NCFM level 1 certified professional with previous professional stints at Axis Bank and ICICI Bank. An MBA (Finance) and PGP Analytics by Education, Kamalika is passionate to write about Analytics driving technological change.

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What Organisational Changes are Required to Succeed with Robotics Process Automation? - Analytics Insight

Can a systematic usability evaluation help us develop better wearable robots? – On Medicine – BMC Blogs Network

Jan T. Meyer, Olivier Lambercy & Roger Gassert, 2020

Wearable robotics has gained increasing attention over the past years. The human-centered design paradigms for these wearable robotics aim to promote technology acceptance by better considering the needs of the end-user. Through workshops, focus groups, and participatory design sessions, developers strive to meet user needs and develop the next-generation wearable robotics technology that can improve the quality of life of millions. However, low technology acceptance and adoption of wearable robots for sensorimotor therapy, assistance in daily life, work-related injury prevention, or human augmentation indicates that state-of-the-art devices still underperform in real-life usability.

freshidea / stock.adobe.com

While there is a consensus that usability is key, publications on dedicated and systematic usability studies combining quantitative and qualitative evaluation are scarce (Reinkensmeyer 2019). The evident lack of standards on how to best evaluate usability in wearable robotics directly affects research, technology maturation, and the ability to compare results and technologies (Shore 2018, Armansdottir et al. 2020). Thus, we believe that it is of fundamental importance to understand current development and evaluation practices in more detail, identify their limitations, and learn which evaluation methods have helped to generate solutions with high usability.

technological solutions that not only meet the target users needs, but may even exceed their expectations.

With a survey devoted to usability evaluation in wearable robotics, we aim to investigate how usability is defined, how developers perceive its importance, how the evaluation focus may shift during technology maturation, and how target-user feedback is acquired. With these insights, we aim to guide researchers/developers in the process of identifying the right measures for their specific context of use, and consequently, support ongoing endeavors in establishing benchmarking practices.

We believe that a more structured and comparable evaluation will enable a genuinely human-centered design of wearable robots and hopefully contribute to the development of technological solutions that not only meet the target users needs, but may even exceed their expectations.

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Can a systematic usability evaluation help us develop better wearable robots? - On Medicine - BMC Blogs Network

GreyOrange receives first-ever certification for robots in commercial and industrial environments – Modern Materials Handling

GreyOrange, a global software and mobile robotics provider that leverages artificial intelligence and machine learning to optimize fulfillment operations, announced that one of its autonomous mobile robots, Ranger GTP, is the first Automated Mobile Platforms (AMP) robot of its kind to be UL Certified to UL 3100, Second Edition for use in commercial and industrial environments.

Ranger GTP is a goods-to-person autonomous mobile robot that can transport inventory from 220 to 3,500 pounds to workers for picking and packing, while working in collaborative performance with other robots and the human workforce.

This highly sought-after certification demonstrates GreyOranges leadership in setting the bar for safety of automated fulfillment in warehouse environment, said Akash Gupta, Chief Technology Officer, GreyOrange. We felt it was important to develop a truly safer product that would inspire trust and assure our customers and partners that they have made the right decision by implementing a GreyOrange solution.

Ranger series robots, including Ranger GTP, are built together with GreyMatter AI software to form the GreyOrange Fulfillment Operating System. GreyOrange Ranger robots continuously communicate with each other and GreyMatter to recalculate and orchestrate fulfillment priorities and inventory movement patterns based on real-time factors. Ranger GTP is certified against fire, electrical and other hazards, helping to make it safe for both humans and robots to work with.

We are pleased to see GreyOrange proactively achieve UL Certification for Ranger GTP AMP to UL 3100, Second Edition, said Jeff Smidt, vice president and general manager of energy and power technologies at UL. This represents a milestone in industry by heading down a safer path for automated mobile platforms.

UL Certified products go through rigorous testing, inspection and auditing in the industrial field, where risk is higher than most and safety is the utmost important application. The certification process included a step-by-step review of all the components in Ranger GTP from a fire and shock perspective to meet the safety requirements of UL 3100, Second Edition, Outline of Investigation for Automated Mobile Platforms (AMPs).

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GreyOrange receives first-ever certification for robots in commercial and industrial environments - Modern Materials Handling

Mayo in Mankato adds more robotic surgery options – Mankato Free Press

Surgeons say the continued expansion of robotic surgery options at Mayo Clinic Health System in Mankato will allow for more minimally invasive procedures.

The health system recently added a new DaVinci Xi robot for the urology, gynecology and general surgery departments. The orthopedic surgery department also received a new robot this week.

Surgical staff will train to use the latest technology, with the DaVinci set to debut in August.

It actually gives us a lot more versatility with what we can do, said Dr. Tara Krosch, a general and trauma surgeon, of the new technology. The focus is still the same though, to allow for more minimally invasive surgeries.

Krosch is also vice chair of the health systems clinical practice in surgical specialties. She said Mayo in Mankato went from having two surgeons using robotic surgery to nine over about the last two years.

One of the nine surgeons, Dr. Derek Gearman, joined the team last year to provide prostate surgeries. His arrival meant Mayo in Mankatos patients no longer needed to go Rochester for the treatment like they had in past years.

Gearmans robotic surgery capabilities include the partial or complete removal of prostates, removing cancerous tumors from kidneys and reconstructing the renal pelvis. Bringing care options not previously available at the hospital is a great feeling, he said.

Just knowing they can be taken care of at a high level closer to where they live is beneficial, he said.

He and Krosch said they expect robotics to play an increasingly big role in surgeries as time goes on. Gearman noted the vast majority of trainees coming through his residency program were more proficient in using robots for procedures like prostatectomies.

Especially in a narrow part of the body like the pelvis, he said the robots enhanced visualization helps surgeons reach difficult areas. It also allows for smaller incisions, contributing to less severe pain and less need for pain medication afterward.

Its wildly beneficial for patients, and the biggest area I see it is post-operative time and narcotic use, Gearman said. This is a way to hopefully avoid even needing to prescribe those types of medications.

He also uses another technological advancement, lasers, for a different prostate procedure. Holmium laser prostate surgery, or HoLEP, involves removing the tissue blocking urine flow through the prostate.

It requires no incisions, and Gearman is one of just two surgeons in the Midwest to offer it. The other is at the University of Minnesota.

Gearman said hes had patients who thought theyd never be able to urinate without a catheter again receive the procedure and have near-instantaneous benefits.

Now with the new, DaVinci robot set to get its first use later this month, he called it a huge upgrade from the previous model. Itll have sharper visualizations, better software and more instruments, he said.

The robot to be used for orthopedic surgery, a Mako, came Thursday. A start date for using it isnt yet set, since staff still need to go through training.

Krosch sees it bringing similar benefits once up and running. In some cases, the more minimally invasive procedures can get patients in for surgery and back home to recover within the same day, she said.

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Mayo in Mankato adds more robotic surgery options - Mankato Free Press

Global Programmable Robots market is expected to reach $8,083.61 million by 2027 – PRNewswire

GAITHERSBURG, Md., July 29, 2020 /PRNewswire/ -- According to Stratistics MRC, the Global Programmable Robots Market is accounted for $2,302.07 million in 2019 and is expected to reach $8,083.61 million by 2027 growing at a CAGR of 17.0% during the forecast period.

Some of the key players profiled in the Programmable Robots Market include Aldebaran Robotics Sas, Fischertechnik GmbH, Honda Motor Co., Ltd, Innovation First International Inc, iRobot Corporation, Modular Robotics Incorporated, Orbotix, Inc, RoboBuilder Co. Ltd, SoftBank Robotics Europe SAS, SuperDroid Robots Inc., The LEGO Group, and Wowwee Group Limited (Optimal Group Inc.).

Increasing adoption of robots for educational purposes and continuous innovation leading to better functionality of robots are the major factors propelling the market growth. However, high cost and time-consuming implementation are hampering the market growth.

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Programmable robots are types of automatic devices that normally perform functions ascribed through remote controls or specified programs. These programmable robotic kits range from PC-controlled robots to simple remote-controlled robots and further from complex robots such as humanoids to simple wheeled robots. The programmable robot is an automatic device that performs functions normally ascribed though programs or remote control. These robots help in understanding and conceptualizing the theories involved in designing and operating a robot and also help to program the robot using simple virtual programming languages such C, C++, The major consumers of these robots are students, hobbyists, and researchers.

Based on the application, the education segment is going to have a lucrative growth during the forecast period owing to the increasing adoption of programmable robots for educational purpose to enhance the learning and teaching process. Programmable robots in education help students to engage highly in the four subject areas namely science, technology, engineering and mathematics (STEM). It helps students to learn via project-based learning, hands-on learning, collaborative learning, authentic learning, and constructive learning approaches which stimulates the learning process.

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By geography, Asia Pacific is anticipated to hold considerable market share during the forecast period due to the rising awareness about the benefits of robotics and escalating adoption of robotic kits in the region. The Asia Pacific will emerge as the leading market in terms of growth owing to the growing demand from countries such as India, China, and Japan. Also, the increasing adoption of robotic kits in schools, universities, and research institutes for educational purpose is another reason driving the growth of a programmable robot market in the region.

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Global Programmable Robots market is expected to reach $8,083.61 million by 2027 - PRNewswire

Trending News Corona impact on Household Robots Market Advanced Technologies and Growth Opportunities in Industry 2020-2025| Intuitive Surgical,…

Global Household Robots Market Report 2020 by Key Players, Types, Applications, Countries, Market Size, Forecast to 2026 (Based on 2020 COVID-19 Worldwide Spread)

The global Household Robots Market is carefully researched in the report while largely concentrating on top players and their business tactics, geographical expansion, market segments, competitive landscape, manufacturing, and pricing and cost structures. Each section of the research study is specially prepared to explore key aspects of the global Household Robots Market. For instance, the market dynamics section digs deep into the drivers, restraints, trends, and opportunities of the global Household Robots Market. With qualitative and quantitative analysis, we help you with thorough and comprehensive research on the global Household Robots Market. We have also focused on SWOT, PESTLE, and Porters Five Forces analyses of the global Household Robots Market.

Leading players of the global Household Robots Market are analyzed taking into account their market share, recent developments, new product launches, partnerships, mergers or acquisitions, and markets served. We also provide an exhaustive analysis of their product portfolios to explore the products and applications they concentrate on when operating in the global Household Robots Market. Furthermore, the report offers two separate market forecasts one for the production side and another for the consumption side of the global Household Robots Market. It also provides useful recommendations for new as well as established players of the global Household Robots Market.

Final Household Robots Report will add the analysis of the impact of COVID-19 on this Market.

Household Robots Market competition by top manufacturers/Key player Profiled:Intuitive Surgical, Irobot, Neato Robotics, Sharp, Dyson, Toshiba, Panasonic, F&P Robotics, Jibo, Savioke, SoftBank, Ecovacs, Fujitsu, Siasun Robot & Automation, Samsung, Yujin Robot, Matsutek, LG

>>> Get Free Sample PDF (including COVID19 Impact Analysis, full TOC, Tables and Figures) of Household Robots Market:

the global Household Robots market is estimated to be valued at XX Million US$ in 2019 and is projected to reach XX Million US$ by 2026, expanding at a CAGR of XX% during the forecast period. The report on Household Robots market provides qualitative as well as quantitative analysis in terms of market dynamics, competition scenarios, opportunity analysis, market growth, industrial chain, etc. In this study, 2019 has been considered as the base year and 2020 to 2026 as the forecast period to estimate the market size for Household Robots.

Segmentation by Product:

Floor Cleaning RobotsWindow Cleaning RobotsPool Cleaning Robots

Segmentation by Application:

IndividualCommercial

Competitive Analysis:

Global Household Robots Market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of Household Robots Market for Global, Europe, North America, Asia-Pacific, South America and Middle East & Africa.

Scope of the Report:The all-encompassing research weighs up on various aspects including but not limited to important industry definition, product applications, and product types. The pro-active approach towards analysis of investment feasibility, significant return on investment, supply chain management, import and export status, consumption volume and end-use offers more value to the overall statistics on the Household Robots Market. All factors that help business owners identify the next leg for growth are presented through self-explanatory resources such as charts, tables, and graphic images.

The report offers in-depth assessment of the growth and other aspects of the Household Robots market in important countries (regions), including:

North America(United States, Canada and Mexico)

Europe (Germany, France, UK, Russia and Italy)

Asia-Pacific (China, Japan, Korea, India, Southeast Asia and Australia)

South America (Brazil, Argentina, Colombia)

Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)

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Table of Contents

Report Overview:It includes major players of the global Household Robots Market covered in the research study, research scope, and Market segments by type, market segments by application, years considered for the research study, and objectives of the report.

Global Growth Trends:This section focuses on industry trends where market drivers and top market trends are shed light upon. It also provides growth rates of key producers operating in the global Household Robots Market. Furthermore, it offers production and capacity analysis where marketing pricing trends, capacity, production, and production value of the global Household Robots Market are discussed.

Market Share by Manufacturers:Here, the report provides details about revenue by manufacturers, production and capacity by manufacturers, price by manufacturers, expansion plans, mergers and acquisitions, and products, market entry dates, distribution, and market areas of key manufacturers.

Market Size by Type:This section concentrates on product type segments where production value market share, price, and production market share by product type are discussed.

Market Size by Application:Besides an overview of the global Household Robots Market by application, it gives a study on the consumption in the global Household Robots Market by application.

Production by Region:Here, the production value growth rate, production growth rate, import and export, and key players of each regional market are provided.

Consumption by Region:This section provides information on the consumption in each regional market studied in the report. The consumption is discussed on the basis of country, application, and product type.

Company Profiles:Almost all leading players of the global Household Robots Market are profiled in this section. The analysts have provided information about their recent developments in the global Household Robots Market, products, revenue, production, business, and company.

Market Forecast by Production:The production and production value forecasts included in this section are for the global Household Robots Market as well as for key regional markets.

Market Forecast by Consumption:The consumption and consumption value forecasts included in this section are for the global Household Robots Market as well as for key regional markets.

Value Chain and Sales Analysis:It deeply analyzes customers, distributors, sales channels, and value chain of the global Household Robots Market.

Key Findings: This section gives a quick look at important findings of the research study.

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Trending News Corona impact on Household Robots Market Advanced Technologies and Growth Opportunities in Industry 2020-2025| Intuitive Surgical,...

Where Is Robotics Heading? Perspectives From iRobot (Colin Angle), Stanley Black & Decker, And Robots In Service Of The Environment – Forbes

The dream of robots and intelligent machines that can perform a wide array of tasks has been around in the common visions and fantasies of people for centuries. Machines that can do the work of people without having the failings of people is one of those long-sought visions of the future. Originally envisioned as physical systems, the term robot is now used to describe any sort of software or hardware-based automation, whether intelligent or not, that can perform a task that would otherwise require human labor or brainpower.

Colin Angle, Chairman, CEO and Founder of iRobot

Since the term robot was first coined in 1920, robots have become an increasing part of our lives. Companies looking to increasingly automate and enable greater portions of their business that require physical human labor currently look to robots to help or fully replace humans with many tasks. Additionally, robotics companies are also building robots for the consumer market as well. With robots increasingly being used in both professional and personal settings, where are we in the current state of robotics and where is the robotics industry heading?

Many forward thinking companies are using robotics

Increasingly, a number of companies are turning to robotics to help with many human centered tasks. These robots either are there to augment their human counterparts or fully replace them at certain tasks. Physical robots are highly desired in many industries, especially to perform tasks often referred to as the four Ds: Dirty, Dangerous, Dear (or Expensive), and Dull (or Demeaning). These robots operate every day in manufacturing, warehouse, health care, and other situations to perform the tasks that would otherwise be performed by humans with not always positive outcomes.

Stanley Black & Decker is well-known for their innovative tools for construction and building, but you may not be aware that the company also has a future-looking innovation lab that focuses in other areas of development. The company has primarily been known for things such as knives, drill bits, tape measures and other hardware and tools. However over the last several years the companys focus has been on how it can use AI to improve their software, the types of products that they are developing for their customers, and how to make those things work smarter and more efficiently.

For Stanley Black & Decker, AI and robots and other developmental technologies are increasingly being used and incorporated into various design, manufacturing, and related functions at the company. Just like with other industries the company is finding these robots are not replacing jobs, but they are helping workers to use their time more wisely. By having robots perform some of the menial labor, human workers are freed up to perform higher level tasks and add value to the products they're creating.

For forward thinking organizations like Stanley Black & Decker the use of robotics can be seen as a strategic advantage. By identifying opportunities where robotics can be applied, operational efficiencies, benefits, and ROI will be achieved. Robots will help decrease costs, improve safety, and overall enhance operations. Embracing robotics and disruptive technologies will help improve and enhance manufacturing as well as shift the way the company designs and validates. From the Stanley Black & Decker perspective, at least, robotics is core to their long term strategy, and well be seeing more robotics in our day-to-day lives.

Robots going underwater

While many focus on robots above ground, some companies, organizations, and non-profits are bringing robots to the seas. Robots in Service of the Environment (RSE) is developing robots that are able to operate in water to help safely capture invasive species. By bringing augmented intelligence systems and robotics to harsh environments, such as those underwater, we can gain capabilities that would otherwise be too dangerous for humans.

In one particular application, RSE is focused on the challenge of invasive Lionfish. Lionfish are known to be a very invasive fish that quickly eat young reef fish and have no natural predators in waters where they are not indeginous. Although divers could easily kill these invasive fish with spear guns at less than 100ft down, RSE wanted to see if robotics solutions that could operate underwater would be a better solution. Creating scalable and affordable robots is a key driver for RSE. The company has already had a few iterations of their underwater robots, iterating and improving with each new robot. Right now, the process for capturing lionfish is very much human centric, with humans above water controlling and operating the robot. However, the plan is for future versions to self-identify the lionfish to limit the need for human interaction.

RSEs mission is to apply robotic technology to solve large-scale environmental challenges and to inspire the next generation of scientists and engineers through these efforts. While the underwater robot is their first robot in deployment, RSE is also focused on developing robots to solve todays environmental problems as well as inspire the next generation of scientists and engineers. For them, the future looks promising and by getting folks involved in this process and raising awareness of environmental issues, they hope to inspire the next generation. From the RSE perspective, well be seeing robotics applied increasingly to more challenging environments and providing more value where humans are just not capable or equipped to go. If we can put rovers on Mars, then we can put robots to work under the sea.

Moving into the Golden Age of Robotics

For the past few decades, robots and autonomous machines have been making their way into our homes. The idea of Rosie from the Jetsons TV show, a robot that can talk, cook, clean, and interact with humans is still not realized. However robots and autonomous machines that can perform certain narrow tasks are a reality. We now have vacuums that can self navigate through rooms, lawn mowers that can automatically navigate your yard and cut your grass, cars that are getting ever closer to fully autonomous driving, and other machines that can perform certain functions.

Colin Angle, Chairman, CEO and Founder of iRobot believes we are on the cusp of the golden age of robotics. In order to move into this golden age and move past automation to robots and machines that are truly intelligent, three steps need to be achieved. First, robots need to become more responsive. Instead of robots being programmed to simply perform a task, robots need to actually understand their environment and respond accordingly. Second, robots must be more collaborative. To accomplish this we must broaden the awareness and understanding of the robot beyond its immediate environment. It needs to also collaborate with people and other robots as well. While we have collaborative robots already, the vast majority of robots would not be considered to fall into this category. Third, is that in order to have robots be truly intelligent, they must act as part of a larger system. For example, when robots can understand their surroundings and environment they can interact and operate with other robots and devices in your house to create a true ecosystem rather than a bunch of disparate systems.

While many companies are increasing building and adopting robotics into various parts of their workflows, and consumers have welcomed robots into their homes to help with various chores and tasks, the need for intelligent robots continues. Creating robots can be a very costly venture, and unfortunately some robotics companies have not been able to stay in business. However there is much innovation still to be had and the robotics industry isnt going away anytime soon. Many companies and non-profits are finding increasing value from bringing robots into their various operations. As the ROI continues to be shown, companies will continue to invest in robots. At some point, hopefully in the near future, intelligent robots will become mainstream and a true robotics revolution will emerge.

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Where Is Robotics Heading? Perspectives From iRobot (Colin Angle), Stanley Black & Decker, And Robots In Service Of The Environment - Forbes

Robotics Special Report: Big Data is the New Currency – Automation World

Kawasaki Robotics Trend Manager failure prediction software is designed to help companies avoid unexpected downtime by allowing them to predict failures and fix issues before loss of production.

A 2019 business intelligence report, Robotics, Innovation 2 Implementation, from PMMI, the Association for Packaging and Processing Technologies, noted, The future of robotics in the manufacturing space will be defined by big data and the ability of AI systems to analyze and act on production information. It adds that, Future factories will utilize big data collection and analyzation to empower robots to make on-the-fly decisions in the middle of production, even when presented with unfamiliar scenarios.

Gerhard Schubert GmbH is among those companies that have embraced big data by developing a solution for its modular, robotic packaging systems that it says provides meaningful analysis of the key figures and 100% protection against Internet attacks. Now integrated into every new robot-based TLM packaging systemwhich offers both primary and secondary packaging capabilitiesis Schuberts industrial gateway, GS.Gate. GS.Gate allows detailed evaluations of system productivity to be called up, and the results can be viewed either on the GRIPS.world customer platform or on the machine operating terminal. From this analysis, Schubert says, potentials and possibilities can then be derived as to how the OEE [Overall Equipment Effectiveness] ratio of the line and therefore the added value can be improved.

Read related articles from Packaging World:

Cobots Automate Assembly & Bagging of PopSockets

Wet Wipes Case Packed via Robots at 160/min

Tomato Grower Automates Palletizer to Stack Higher, Faster

Global CPGs embrace robotics

Packagers realize ROI with robotics

Also operating in the new currency of big data is Kawasaki Robotics failure prediction software, Trend Manager, designed to help companies avoid unexpected downtime by allowing them to predict failures and fix issues before loss of production. The software, which allows users to maintain control of their information, monitors motor current and robot condition during operation and generates a failure prediction date using the data. When Trend Manager detects an abnormality, a warning alarm is sent to the user via email, saves the data, and logs it for reference.

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Robotics Special Report: Big Data is the New Currency - Automation World

Robotics and automation in a post-pandemic food system – AGDAILY

Robots working in abattoirs, sky-high vertical farms, more gene-edited foods in our supermarkets, and automated farming systems could all help guarantee food supply in the next pandemic.

University of Queensland Professor Robert Henry said the technologies had all been in various stages of planning prior to COVID-19, but food producers would now be moving much faster to prepare for the next pandemic.

Food processing facilities like meat works have had to close due to a staff member being infected with the coronavirus, and all food processing industries where you have workers in small confined spaces are similarly at risk, Henry said.

Henry, who is the director of the Queensland Alliance for Agriculture and Food Innovation (QAAFI), said roboticised abattoirs and automated harvesting and production facilities would also reduce the risk of transmission of pathogens among workers but also the spread of viruses via the food itself.

COVID does not seem to be transmissible from an infected human touching food but a future pandemic virus might be transmitted this way, so automating the food supply chain reduces this risk.

It also minimises reliance on human workers that are not available due to migration restrictions and border closures.

Henry said protected cropping, including vertical farms or growing food in vertically stacked layers similar to a skyscraper building would optimise plant growth and enable control over climate variations, chemical inputs and water resources.

There will have to be policies that drive consumer acceptance of gene edited foods, which some consumers consider as GMOs. Advanced technologies need to be adopted globally, in each region, to deliver local food production capability that could provide secure sources of food in future pandemics, he said. We will need to design crops to suit automated systems for example for fruit to grow in places where it can be harvested robotically.

Henry said the ongoing COVID-19 pandemic made it difficult to fully assess the impact on agriculture and food supply.

He said despite growing stocks of foods such as cereals, it was estimated the number of people facing a food crisis will grow from 135 million to 265 million by the end of 2020.

It may seem to those of us in Western countries that the only impact on food supply has been a rush on pasta and rice in the supermarket and home-baking but the loss of income caused by the pandemic has hit some countries in Africa hard.

We are in a situation where we have food surpluses while there has been a doubling in the number of people who cant afford to eat and the situation is likely to get worse. Henry said increased investment in agricultural research and development would support enhanced food security.

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Robotics and automation in a post-pandemic food system - AGDAILY

ABB India opens a new robotics facility to support the digital transformation of manufacturing in India – ELE Times

Spread over 3,600 sq.m at the ABB Nelamangala factory premises in Bengaluru, the new facility will enable ABB India to deliver robotic applications and digital solutions for a variety of Indian industries, including automotive, food & beverage, electronics and other upcoming sectors. The facility houses a state-of-the-art shop floor that can run proof of concepts and factory acceptance tests for 1000 ABB robots every year, which doubles the companys capacity. This enables rapid innovation, adaption, optimisation and agile delivery of made-to-order robotics applications for Indian customers.

The new facility harnesses the powers of ABBs deep global expertise and knowledge of the Indian industrial landscape to support our customer base, said Sanjeev Sharma, Managing Director of ABB India. Even with increased demand for automation, the penetration of robotics, especially in small and medium enterprises is still low in India compared to the global average. With the help of the new and improved robotics facility, we will be able to share our knowledge and encourage Indian manufacturers to embrace our game changing technologies and become best-in-class manufacturers for local and global markets.

The facility includes a demonstration center where the latest technologies in robotic welding, gluing and material handling will be showcased and can be used to carry out joint prove-out sessions with customers. ABB will also integrate an ABB AbilityTM Connected Services team that can remotely monitor an installed base of ABB robots to conduct predictive maintenance and high uptime.

A new Customer Experience Center is being set up for customers to learn about the latest in robotics technology and applications, including ABBs dedicated robot simulation and programming software, RobotStudio. Additionally, the facility will host a paint lab where customers can run simulations of a broad range of industrial painting applications.

ABB is one the leading suppliers of robot, robot systems and machine & factory automation solutions, having shipped over 400,000 robot solutions across the globe. Designed as a complete digital ecosystem, ABBs factory of the future concept will cater to the growing demand of collaborative automation solutions, by enabling innovation of new robot applications tailormade to the Indian market.

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ABB India opens a new robotics facility to support the digital transformation of manufacturing in India - ELE Times

Future Prospects of Rehabilitation Robotics Market 2020 | Size, Growth, Demand, Opportunities & Forecast To 2026 | AlterG, Bionik, Ekso Bionics,…

Rehabilitation Robotics Market research is an intelligence report with meticulous efforts undertaken to study the right and valuable information. The data which has been looked upon is done considering both, the existing top players and the upcoming competitors. Business strategies of the key players and the new entering market industries are studied in detail. Well explained SWOT analysis, revenue share and contact information are shared in this report analysis.

Rehabilitation Robotics Market is growing at a High CAGR during the forecast period 2020-2026. The increasing interest of the individuals in this industry is that the major reason for the expansion of this market.

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Top Key Players Profiled in This Report:

AlterG, Bionik, Ekso Bionics, Myomo, Hocoma, Biodex, Focal Meditech, Honda Motor, Instead Technologies, Aretech. LLC, Kinova, MRISAR, Robotdalen, RU Robots, Woodway, Tyromotion

The key questions answered in this report:

Various factors are responsible for the markets growth trajectory, which are studied at length in the report. In addition, the report lists down the restraints that are posing threat to the global Rehabilitation Robotics market. It also gauges the bargaining power of suppliers and buyers, threat from new entrants and product substitute, and the degree of competition prevailing in the market. The influence of the latest government guidelines is also analyzed in detail in the report. It studies the Rehabilitation Robotics markets trajectory between forecast periods.

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Table of Contents:

Global Rehabilitation Robotics Market Research Report

Chapter 1 Rehabilitation Robotics Market Overview

Chapter 2 Global Economic Impact on Industry

Chapter 3 Global Market Competition by Manufacturers

Chapter 4 Global Production, Revenue (Value) by Region

Chapter 5 Global Supply (Production), Consumption, Export, Import by Regions

Chapter 6 Global Production, Revenue (Value), Price Trend by Type

Chapter 7 Global Market Analysis by Application

Chapter 8 Manufacturing Cost Analysis

Chapter 9 Industrial Chain, Sourcing Strategy and Downstream Buyers

Chapter 10 Marketing Strategy Analysis, Distributors/Traders

Chapter 11 Market Effect Factors Analysis

Chapter 12 Global Rehabilitation Robotics Market Forecast

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Corona Impact: Is Industrial Robotics Market will Propel with its Advanced Approaches in 2020 – Market Research Posts

The emergence of COVID-19 across the world has impacted the global industrial robotics market in a negative way. The decline in the market growth is majorly owing to the high investment costs of industrial robots. Nonetheless, the market is likely to recover by the second & third quarter of 2022. The continuous advancements in quality of products and in its costs is expected to impel the market growth of industrial robotics market post-COVID-19 pandemic.

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The global industrial robotics market is likely to witness a decrease in growth rate due to the COVID-19 pandemic. According to a new report published by Research Dive, the global industrial robotics market accounted for $43.2 million in 2018 and is projected to surpass $85.2 million by 2026. Comprehensive analysis of drivers, restraints, growth opportunities and strategies executed by various governments & major market players to sustain in the COVID-19 pandemic are further provided in the report.

The global industrial robotics market was estimated to grow at a CAGR of 9.5% by 2026 prior to the COVID-19 crisis. Although, due to the COVID-19 pandemic, now the market is projected to exhibit a CAGR of 8.8% during the forecast period. Industrial robots are very costly to build. In addition, daily maintenance of high power and high electricity usage is cost prohibitive for end-uses; the industrial robotics industry would be impeded by these factors in the forecast era.

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The predicted pre-COVID-19 market size for the industrial robotics industry was $51.4 million in 2020 and is expected to witness a drastic downfall and reach up to $33.4 million due to COVID-19 pandemic. Thus, the global industry players are looking towards the government for financial support to sustain this crisis.

The global market is anticipated to observe a significant growth post-COVID-19 pandemic and recover by the second or third quarter of 2022. Implementation of self-programmed robotics based on artificial intelligence and machine learning is expected to generate increased investment opportunities over the forecasted period. For instance, Huawei, CISCO, and Microsoft are now focused on maintaining collaborations with other IoT firms to build new robots so that their production project starts as soon as possible. Therefore, increasing production line efficiency in the projected timeframe is expected to propel the demand for industrial robots.

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Corona Impact: Is Industrial Robotics Market will Propel with its Advanced Approaches in 2020 - Market Research Posts

Locus Robotics Expands UK Presence with Strategic Partnership with Balloon One – PRNewswire

WILMINGTON, Mass., July 29, 2020 /PRNewswire/ -- Locus Robotics, the market leader in autonomous mobile robots (AMR) for fulfillment warehouses, today announced a strategic partnership with Balloon One, a London-based provider of software and supply chain applications for distribution, manufacturing and e-commerce companies. Together, Balloon One and Locus Robotics will provide customers with a more efficient, cost-effective solution to meet the dramatically increasing demand for e-commerce fulfillment, further driving the adoption of the innovative warehouse technologies offered by both companies.

"As e-commerce continues to explode across all channels, warehouse fulfillment has become a critical part of the economy," said Rick Faulk, CEO of Locus Robotics. "Our partnership will deliver cutting-edge robotics technology to Balloon One customers and drive significant operational efficiency and productivity gains, and a faster time to value."

Through the partnership, Balloon One will offer Locus Robotics' award-winning, multi-bot solutionfor warehouse fulfillment alongside Krber/HighJump WMS, enabling customers to achieve consistent efficiency gains of 200-300% without the need for expensive or time-consuming infrastructure changes. In addition, the Locus Robotics-as-a-Service (RaaS) model ensures that Balloon One customers can address the challenges of the labor market at a very low start-up cost.

"Balloon One is pleased to announce an exciting new partnership with the industry's most technologically advanced autonomous mobile robot (AMR) provider, Locus Robotics," said Craig Powell, Managing Director, Balloon One. "The Locus system can be deployed in as little as four (4) weeks and provides two to three (2X-3X) times picker productivity gains. Based on our internal assessment, we believe this technology will become an essential part of our warehouse operations and will provide our customers with a unique and significant advantage in today's increasingly demanding e-commerce landscape."

The COVID-19 pandemic has quickly transformed the retail industry, making online and omnichannel purchasing the new normal across the globe. Locus Robotics' industry-leading robotics fulfillment solution enables brands, retailers, and third-party logistics (3PL) operators to easily meet higher order volumes and increasing consumer demand for e-commerce, retail, omnichannel, and manufacturing order fulfillment. Locus's proven, multi-bot solution for fulfillment incorporates collaborative, autonomous robots that workclosely with human employees to improve fulfillment productivity and efficiency consistently doubling or tripling fulfillment productivity, lowers labor costs, with near-100% accuracy, while also enabling users to save 30% or more in operating expenses.

Balloon One will be offering live, in-person demonstrations of the Locus Solution to prospective customers at their new demonstration suite in West London. Demos will provide a hands-on experience to showcase the value of the fully integrated Locus and Krber/HighJump solutions.

About Locus RoboticsLocus Robotics' revolutionary, multi-bot solution incorporates powerful and intelligent autonomous mobile robots that operate collaboratively with human workers to dramatically improve piece-handling productivity 2X-3X, with less labor compared to traditional picking systems. This award-winning solution helps retailers, 3PLs, and specialty warehouses efficiently meet and exceed the increasingly complex and demanding requirements of fulfillment environments, easily integrating into existing warehouse infrastructures without disrupting workflows, instantly transforming productivity without transforming the warehouse. For more information, visit http://www.locusrobotics.com.

About Balloon OneFounded in 2003 and based in West London, Balloon One is an End-to-End Supply Chain Systems provider with a focus to deliver agile solutions through a pragmatic approach to their customer's distribution operation, large or small, every time. Balloon One provides WMS, ERP, TMS & Automation, to enable greater interoperability between processes throughout the supply chain. With a value driven and fact-based strategy, Balloon works with clients to not only identify and resolve their pain points but to facilitate the growth of their businesses. For more information, visit. http://balloonone.com.

SOURCE Locus Robotics

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Locus Robotics Expands UK Presence with Strategic Partnership with Balloon One - PRNewswire

Duke Robotics Presents TIKAD Combat Drone Equipped with Innovative Stabilization Technology – sUAS News

Duke Robotics, a leader in robotics technology and drone solutions, introduces TIKAD, an innovative military UAS octocopter drone with a mounted lightweight firearm and advanced stabilization technology. TIKAD features a lightweight robotic gimbal with the unparalleled ability to carry and stabilize payload recoil up to three times its weight. In addition, TIKADs gimbal offers real-time, 6 DOF (degrees of freedom), a capability that provides an advantage to U.S. and allied forces in combat.

TIKADadvances military strategy by integrating an aerial support system into combat missions. The UAS drone can engage with troops or lead precision strikes without the need for intrusive action. TIKAD can be used in various military applications including border patrol law enforcement, drone on drone warfare and counter terrorism.

According to a recent report,Fortune Businessprojects the military drone market to reach$21.76 billionby 2026, at a CAGR of 12.4% during the forecast period. The report says, Advanced defense technologies, such as artificial intelligence, 3D printing, multi-sensor data fusion for UAV navigation, cloud computing-based services for military UAVs, and technological advancements in drone payloads are expected to support the market growth during the forecast period. mid-air refueling of drone, and anti-UAV defense system are the major upcoming trends in the military drone market.

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Duke Robotics Presents TIKAD Combat Drone Equipped with Innovative Stabilization Technology - sUAS News

ROBUST GROWTH OF THE Service Robotics Market MARKET PREDICTED OVER THE FORECAST PERIOD 2015 2021 – Research Newspaper

The Service Robotics Market market report provides a detailed analysis of global market size, regional and country-level market size, segmentation market growth, market share, competitive Landscape, sales analysis, impact of domestic and global market players, value chain optimization, trade regulations, recent developments, opportunities analysis, strategic market growth analysis, product launches, area marketplace expanding, and technological innovations.

It incorporates Service Robotics Market market evolution study, involving the current scenario, growth rate (CAGR), and SWOT analysis. Important the study on Service Robotics Market market takes a closer look at the top market performers and monitors the strategies that have enabled them to occupy a strong foothold in the market. Apart from this, the research brings to light real-time data about opportunities that will completely transform the trajectory of the business environment in the coming years to 2025. Some of the key players in the global Service Robotics Market market is Adept Technology Inc, Aethon Inc, Bluefin Robotics, DJI, Delaval International AB, ECA Group, GeckoSystems Intl. Corp, IRobot Corporation, Kuka AG, Intuitive Surgical Inc, Parrot S.A. ,

Download Sample Copy of the Report to understand the structure of the complete report (Including Full TOC, Table & Figures) @ https://brandessenceresearch.biz/Request/Sample?ResearchPostId=128&RequestType=Sample

Service Robotics Market Market: Competitive Landscape:

The competitive landscape further includes details about different players and their position on a global and a local level is also explained in detail in this compiled study. These insights were prepared through mapping business strategies and products that offer high revenue generation capacities. An overview of the Service Robotics Market market Comprehensive analysis of the market Analyses of recent developments in the market Events in the market scenario of the past few years Emerging market segments and regional Service Robotics Market markets Segmentations up to the second and/or third level Historical, current, and estimated market size in terms of value and volume Competitive analysis, with company overview, products, revenue, and strategies. An impartial assessment of the market Strategic recommendations to help companies increase their Service Robotics Market market presence.

The Key Manufacturers covered in this Report:- Adept Technology Inc, Aethon Inc, Bluefin Robotics, DJI, Delaval International AB, ECA Group, GeckoSystems Intl. Corp, IRobot Corporation, Kuka AG, Intuitive Surgical Inc, Parrot S.A. ,

By Power Rating:Defense, Security & Rescue Service RoboticsField Robots Service RoboticsMedical Service RoboticsMarine Service RoboticsLogistics Service RoboticsTelepresence Service RoboticsInspection & Maintenance ServiceEntertainment Service Robotics SystemEducation & Research Service RoboticsBy Operating Environment:

AerialGround-BasedMarine

The key regions covered in the Service Robotics Market market report are:

North America (U.S., Canada, Mexico)

South America (Cuba, Brazil, Argentina, and many others.)

Europe (Germany, U.K., France, Italy, Russia, Spain, etc.)

Asia (China, India, Russia, and many other Asian nations.)

Pacific region (Indonesia, Japan, and many other Pacific nations.)

Middle East & Africa (Saudi Arabia, South Africa, and many others.)

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Table of Contents

Report Overview: It includes major players of the global Service Robotics Market Market covered in the research study, research scope, and Market segments by type, market segments by application, years considered for the research study, and objectives of the report.

Global Growth Trends: This section focuses on industry trends where market drivers and top market trends are shed light upon. It also provides growth rates of key producers operating in the global Service Robotics Market Market. Furthermore, it offers production and capacity analysis where marketing pricing trends, capacity, production, and production value of the global Service Robotics Market Market are discussed.

Market Share by Manufacturers: Here, the report provides details about revenue by manufacturers, production and capacity by manufacturers, price by manufacturers, expansion plans, mergers and acquisitions, and products, market entry dates, distribution, and market areas of key manufacturers.

Market Size by Type: This section concentrates on product type segments where production value market share, price, and production market share by product type are discussed.

Market Size by Application: Besides an overview of the global Service Robotics Market Market by application, it gives a study on the consumption in the global Service Robotics Market Market by application.

Production by Region: Here, the production value growth rate, production growth rate, import and export, and key players of each regional market are provided.

Consumption by Region:This section provides information on the consumption in each regional market studied in the report. The consumption is discussed on the basis of country, application, and product type.

Company Profiles:Almost all leading players of the global Service Robotics Market Market are profiled in this section. The analysts have provided information about their recent developments in the global Service Robotics Market Market, products, revenue, production, business, and company.

Market Forecast by Production:The production and production value forecasts included in this section are for the global Service Robotics Market Market as well as for key regional markets.

Market Forecast by Consumption:The consumption and consumption value forecasts included in this section are for the global Service Robotics Market Market as well as for key regional markets.

Value Chain and Sales Analysis:It deeply analyzes customers, distributors, sales channels, and value chain of the global Service Robotics Market Market.

Key Findings: This section gives a quick look at important findings of the research study.

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ROBUST GROWTH OF THE Service Robotics Market MARKET PREDICTED OVER THE FORECAST PERIOD 2015 2021 - Research Newspaper

ABB India opens new robotics facility to support the digital transformation of manufacturing in India – Express Computer

The new ABB Robotics solutions delivery facility will enable Indian customers to reap the benefits of Industry 4.0 including cutting-edge robotics and digitalization technologies, going at the heart of helping India become a resilient high-tech manufacturing economy in the world.

Spread over 3,600 sq.m at the ABB Nelamangala factory premises in Bengaluru, the new facility will enable ABB India to deliver robotic applications and digital solutions for a variety of Indian industries, including automotive, food & beverage, electronics and other upcoming sectors. The facility houses a state-of-the-art shop floor that can run proof of concepts and factory acceptance tests for 1000 ABB robots every year, which doubles the companys capacity. This enables rapid innovation, adaption, optimisation and agile delivery of made-to-order robotics applications for Indian customers.

The new facility harnesses the powers of ABBs deep global expertise and knowledge of the Indian industrial landscape to support our customer base, said Sanjeev Sharma, Managing Director of ABB India. Even with increased demand for automation, the penetration of robotics, especially in small and medium enterprises is still low in India compared to the global average. With the help of the new and improved robotics facility, we will be able to share our knowledge and encourage Indian manufacturers to embrace our game changing technologies and become best-in-class manufacturers for local and global markets.

The facility includes a demonstration center where the latest technologies in robotic welding, gluing and material handling will be showcased and can be used to carry out joint prove-out sessions with customers. ABB will also integrate an ABB AbilityTM Connected Services team that can remotely monitor an installed base of ABB robots to conduct predictive maintenance and high uptime.

A new Customer Experience Center is being set up for customers to learn about the latest in robotics technology and applications, including ABBs dedicated robot simulation and programming software, RobotStudio. Additionally, the facility will host a paint lab where customers can run simulations of a broad range of industrial painting applications.

ABB is one the leading suppliers of robot, robot systems and machine & factory automation solutions, having shipped over 400,000 robot solutions across the globe. Designed as a complete digital ecosystem, ABBs factory of the future concept will cater to the growing demand of collaborative automation solutions, by enabling innovation of new robot applications tailor-made to the Indian market.

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ABB India opens new robotics facility to support the digital transformation of manufacturing in India - Express Computer