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Category Archives: Quantum Computing
5 tech that will explode in your life this decade – ETCIO.com
Posted: January 6, 2020 at 5:47 am
New Delhi, The average time -frame of tech disruption in our lives has significantly diminished and things are changing at a rapid scale around us. In a span of few years, gadgets like MP3 players, compact digital cameras, scanners, CDs, fax machines and several others have disappeared.
On the other hand, new-age technologies like Artificial Intelligence (AI) and Machine Learning (ML), data analytics, Internet of Things (IoT), content streaming, automation, robotics and 5G are not only here to stay but are growing in leaps and bounds to make our lives better.
Let us go through 5 tech trends that will explode in the decade that has just begun.
1. Quantum computing
The team at Google AI has achieved sort of "quantum supremacy" with developing such chip -- a new 54-qubit processor named "Sycamore" that is comprised of fast, high-fidelity quantum logic gates in order to perform the benchmark testing. Not just Google but several tech giants like Microsoft, IBM and Intel have joined the race to build a scalable quantum computer. IBM recently unveiled its quantum computer with 53 qubits.
The current bits in computers store information as either 1 or 0, thus limiting the potential to make sense when faced with gigantic volumes of data. If all goes well, Microsoft is also confident about having one such scalable super machine within the next five years.
"We are looking at a five-year time-frame to build a quantum computer and what we need are roughly 100-200 good qubits with a low-error rate," Krysta Svore, Principal Research Manager, Microsoft Quantum Computing, told IANS recently. Microsoft has also partnered with the Indian Institute of Technology (IIT), Roorkee to conduct lectures on quantum computing for a full semester.
2. Self-driving 'electric' cars
The global revenues from "connected" cars -- the precursor to fully-autonomous or self-driving cars -- are growing at an annual rate of 27.5 per cent and are expected to touch $21 billion by 2020.
Tesla helped create that market and remains an industry leader. The Elon Musk-run company surprised Wall Street by registering a profitable third quarter last year with a total revenue of $6.3 billion riding on sales of its Model S, Model X and Model 3 electric cars. Tesla expected to deliver between 360,000 and 400,000 vehicles in 2019, representing 45-65 per cent growth.
Other automobile companies who will join Tesla in the next decade are Audi e-Tron Sportback; BMW iX3; Ford Mustang Mach-E; Mercedes EQC 400 4Matic; Porsche's Taycan 4S; Volvo XC40 Recharge and Byton M-Byte SUV, to name a few.
India is also planning to replace a significant portion of its conventional internal combustion engine fleet by electric vehicles in the next one decade, particularly to reduce pollution and also to create jobs through manufacturing of such vehicles.
3. 5G-connected homes
With 75 billion Internet of Things (IoT) devices expected to be in place by 2025, the world is at the cusp of experiencing a technology that will change the way live today. Being able to download a full-length HD movie in seconds and share your wow-moments with friends -- that's just the beginning. Commercial 5G networks are starting to go live across the world.
With 5G commercial networks being switched on, the first use cases are enhanced mobile broadband, which will bring better experiences for smartphone users with 100 times faster data and fixed wireless access, providing fiber speeds without fiber to homes.
5G Services have already begun in the US, South Korea and some European countries, including Switzerland, Finland and the UK. CSPs in Canada, France, Germany, Hong Kong, Spain, Sweden, Qatar and the United Arab Emirates have announced plans to accelerate 5G network building through 2020.
4. Voice as a new interface
Voice is slowly becoming the new human-compute interface and the Indian masses -- be it a 3-year-old toddler or a 95-year-old grandpa -- are finally going to leverage voice to interact with the devices and digitally control their lives. Alexa, Google Home, Siri and others are changing the way we speak with devices and the next decade will see digital assistants becoming all-pervasive. Soon, you will be talking to your refrigerator, electric bulbs, washing machine, microwave, coffee machine and what not.
According to Adam Berns, Director of Business Development, Alexa Voice Service (AVS) at Amazon, India is now ready for voice as a core experience."Voice today is powering several devices -- PCs, wearables, smartphones, car accessories and smart home devices -- helping people streamline their lives. I firmly believe voice is the next interface with computing and Amazon with its Alexa offerings is here to change the world," Berns told IANS in a recent interview.
5. Internet TV 24/7
An over-the-top (OTT) viewer in India is spending approximately 70 minutes a day on video streaming platforms, with a consumption frequency of 12.5 times a week, according to a recent Eros Now-KPMG report. In India, the Internet video traffic is projected to reach 13.5 Exabytes (EB) per month by 2022 -- up from 1.5 EB a month in 2017 -- with video contributing 77 per cent of all Internet traffic by 2022.
"Unlike the common thought that urbanites are watching more content online, 65 per cent video consumption is coming from the rural parts of the country thanks to cheap data plans, especially from Reliance Jio, and affordable smartphones. Those who cannot afford to buy a smart, connected TV are now streaming OTT content on phones," TV Ramachandran, President, Broadband India Forum (BIF) told IANS.
There are currently more than 32 online content and video streaming platforms in the country and the market is expected to hit $5 billion by 2023, according to the global management-consulting firm Boston Consulting Group (BCG). Within no time, you will see Indians throwing set-top boxes into dustbins as data becomes further cheap and Internet TV takes over our drawing rooms completely.
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5 tech trends well see more of in 2020 & the small caps that are front and centre – Stockhead
Posted: at 5:47 am
With a new decade just beginning, we thought it was a good time to take a look at what tech trends will gain momentum and the small caps dabbling in them.
Australian tech executives that Stockhead spoke to believe the tech scene in 202o will be similar to last year, with technologies such as quantum computing and blockchain dominating the news.
Quantum computers are far faster than ordinary computers, offering potential solutions to complex computation, cryptography and simulation problems.
Today theyre very noisy, prone to errors and temperature sensitive.
The only ASX stock involved in this space, Archer Materials (ASX:AXE), is working on a quantum computer thats mobile and functional at room temperatures.
Narayan Iyer, Asia-Pacific head of markets at Cognizant, admits you wont be able to own one just yet. But 2020 will see more research and development work into the technology.
This is something else thats been hyped up for years. The CSIRO recently told us AI is a $315 billion industryand Stephen Schwarzman, head of private equity group Blackstone,said in September AI had Amazon-like growth potential.
Tech executives, such as Sean Girvin from cloud computing firm Rackspace, admit it is a long way off from wide-scale adoption due to the last mile problem. Even then, it will still need a human factor in decisionmaking.
However, it will eventually become common place. Joe Petro, chief technology officer at Nuance Communications, suggests though that the industry needs stricter regulation.
On the ASX there are more than two dozen small caps in this space but they tend to focus on specific sectors or problems. For example, 2019s winner, Resonance Health (ASX:RHT), has an AI product that detects iron concentrations in the liver.
Most people probably associate blockchain with cryptocurrency. In fact, bitcoin is actually owned by more Australians than hybrid cars.
But the underlying distributed ledger technology has more uses beyond just cryptocurrency. Research firm Gartner thinks it will take off mid-decade.
Blockchain Australia board member Karen Cohen told Stockhead the best use would be the need for public records that can be trusted being definitive and unchangeable.
One company Stockhead spoke to previously, AgUnity, is using a blockchain solution to prevent farmers in developing countries being cheated.
Andrew Filev, CEO of project management software Wrike, reckons this will be the decade where e-learning platforms take off.
By 2025, 45 per cent of white-collar employees will have used an e-learning platform to improve their job skills or explore new careers, he says.
Filev also believes e-working (remote working) will be viewed as a remedy to urban congestion rather than a way to attract employees.
He noted the Japanese government was encouraging residents of Tokyo to do this during the 2020 Olympic Games.
And by 2025, Filev predicts e-working will be encouraged or incentivised in up to 30 per cent of cities with populations above 5 million people.
There are a handful of ed-techs on the ASX including 3P Learning (ASX:3PL), Retech Technology (ASX:RTE), ReadCloud (ASX:RCL) and Schrole (ASX:SCL).
Australia will need 100,000 more tech workers by 2024. And its not just because people are entering the field but those already in the field are not keeping up to date or specific enough for particular roles.
Australian Computer Society president Yohan Ramasundaras suggestion is to elevate our tech heroes to the status of our sporting greats.
iCollege (ASX:ICT) is one small cap trying to take advantage both of a skills shortage and e-learning.
Managing director Ash Katta told Stockhead even if someone had a tech degree they may need a few months training in something specific, like blockchain, for a particular role.
Having a Master of IT will give you the ground level understanding but it doesnt give you the specific skill set for an employer, he explained.
iColleges short courses are aimed at this demographic.
But Mike Featherstone, managing director of US-listed education play Pluralsight, thinks companies will have to play a role.
Its the onus of CIOs to ensure their talent is equipped with the right skills to keep up with the increasing pace of emerging and evolving technology, he said.
This coming year is an opportunity for organisations to equip themselves with the right tools and teams to evolve with technology.
Read More:
Full-scale AI is still a long way off and it wont completely eliminate humans
What the heck is quantum computing and is it worth investing in?
Aussies own more bitcoin than hybrid cars but blockchain wont be bigger than the internet
EdTech on the ASX: Its an emerging thing
Why Australia needs to elevate our tech heroes to the status of our sporting greats
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US Government Looks To Restrict Exports Of AI, Quantum Computing And Self-Driving Tech – WebProNews
Posted: at 5:47 am
According to The Washington Post, the Trump administration has floated a proposal that would limit high-tech exports to China.
Under the proposal, artificial intelligence (AI), robots, quantum computing, image recognition and self-driving tech would all be prohibited from being exported to China. This would include the tech that drives smartphone assistants, such as Siri.
If you think about the range of products this potentially implicates, thats massive. This is either the opening of a big negotiation with the industry and the public or a bit of a cry for help in scoping these regulations, R. David Edelman, the director of the Project on Technology, the Economy, & National Security at MIT, told The Washington Post.
At the very least, the administration seems intent on extending the restrictions to those countries that are already subject to U.S. arms embargoes, including China.
Needless to say, industry experts are not happy with the proposal. In a separate report by The Washington Post, individuals with the National Venture Capital Association expressed concern about how effective these proposed restrictions would be, versus the damage they would cause.
Almost everything is using AI in one way or another, said Jeff Farrah, NVCAs general counsel. So then is everything subject to export controls?
Farrah continued: Theres not a lot of faith from people in the industry that the government will get this right.
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Prepare yourself for the 4th industrial revolution – INQUIRER.net
Posted: at 5:47 am
When academics, think tanks and future prognosticators speak of the 4th Industrial Revolution, they refer to the disruptive technologies of artificial intelligence (AI), robotics, the Internet of Things, 3D printing, genetic engineering, quantum computing and other emerging technologies.
Everyone could easily imagine a world where we would all need to know how to program AI, or be fluent (or at least literate) in several programming languages. And for us, inquiries for courses and/or experts in data analytics or blockchain technology keep increasing. Hence, get technical would seem to be the way forward. But heres the surprisewe surveyed articles that appeared in Forbes, Inc.Com, LinkedIn and so on, and it is not quite true that only technical skills would be needed.
Indeed, they all say, the vast majority of skills needed for the future are soft skills.
The basic, common argument goes that with automation set to dominate most of our lives and take over rote tasks, humans would be left to provide, well, the human touch. For example, the diagnosis of diseases could soon be done more accurately by machines or robotsmuch like Baymax in the animated movie Big Hero 6, where a simple scan can pinpoint exactly what and where an ailment would be.
But the health care protocol and comfort for the patient, the reasoning goes, would still be best delivered by fellow humans.
Here are the four soft skill areas commonly cited by the articles we compiled:
1. Critical thinking and design thinking. The ability to synthesize, see linkages, distinguish macro from micro, will be an essential skill for the future. So is the ability to design an interface or interaction from the users point of view, to always empathize with how anyone would access your service or use your product.
2. Emotional intelligence. This refers to the persons ability to be aware of, control and express their own emotions as well as being aware of the emotions of others. You exhibit high emotional intelligence if you have empathy, integrity and work well with others. This would include being adaptable and flexible, depending on the individual with whom youre interacting.
3. Creativity. This means you are constantly thinking of new products or enhanced services, or ways of working with or harnessing technologies for your business, and even new ways of thinking about any situation.
4. Communication and collaboration. In a world full of data, to extract meaning from them and communicate this effectively, then written, verbal and interpersonal skills would be necessary. Working with teams would also be crucial as most tasks would be collaborative.
The Inquirer Academy, in this new decade, and as a response to this imminent challenge, is offering a new course called Essential Skills for the Future, which is a six-day interactive program to prepare professionals for disruptive technology. It will equip participants with an understanding and practical applications of critical thinking, problem-solving, creativity, emotional intelligence, collaboration and business communicationthe skills needed to succeed in the future.
It will be on March 12, 13, 19, 20, 26 and 27, 2020, and will be held at the Inquirer Academy. INQ
The Inquirer Academy is at 4168 Don Chino Roces Avenue corner Ponte Street, Makati City. For more information about the workshops or if you would like to add your input on the article, please email [emailprotected], call (02) 8834-1557, (02) 8771-2715 or (0945) 2158935 and look for Jerald Miguel or Karl Paz, or visit http://www.inquireracademy.com
The author is the executive director of the Inquirer Academy.
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Internet Stocks Picked to Take Off in 2020 – Barron’s
Posted: at 5:47 am
Photograph by Hulton Archive/Getty Images
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Not all technology stocks beat the market last year. Indeed, internet stocks lagged behind the major indexes. But underperformance can also present attractive buying opportunities.
To take a look, we asked two veteran internet analystsMark Mahaney of RBC Capital Markets and Colin Sebastian of Bairdfor their top picks for 2020.
Mahaney believes that the internet stocks relative underperformance sets up the sector for strong multiyear returns. The First Trust Dow Jones Internet Index fund (ticker: FDN), which tracks the performance of the Dow Jones Internet Composite index, rose 19% last year, versus the S&P 500 indexs total return of 32% and the Nasdaq Composites 37% gain.
The sectors valuation is reasonable, he says. The median forward enterprise-value-to-Ebitda ratio for large-cap internet names remains around 12, near where it was at the end of 2018.
One of Mahaneys top picks is Google-parent Alphabet (GOOGL). He cites the companys leadership in using artificial intelligence to improve its search and ad platforms. Whoever has the most data wins, he says. Because of [Googles] machine learning, the ads are becoming more relevant.
The analyst has a $1,500 price target for the stock and an Outperform rating. He estimates that Alphabet will spend $51 billion in research and development and capital expenditure for fiscal 2019. This high level of investment spending is a positive sign that the company is bullish on its long-term growth trends, he says.
Sebastian is also positive on Alphabet, with an Outperform rating. He predicts that both its cloud-computing businesses and YouTube will finally become large enough to move the needle for the internet giant this year. The companys recently increased pace of stock buybacks will probably boost the share price, he says.
Amazon.com (AMZN) is his top large-cap idea. Sebastian expects that the e-commerce behemoths profitability will improve during the second half of the year, and he sees big growth opportunities in businesses like cloud-computing, shipping logistics, and advertising.
Outside of the major internet companies, the two analysts have some other interesting ideas. Mahaney thinks that Uber Technologies (UBER) is currently the most dislocated stock, and one that could provide the most upside at current prices. He says that investor sentiment on Uber has become too negative, with the stock down 30% from its initial-public-offering price.
Ride-hailing is actually a very good business, he says, noting how the Uber Rides segments revenue grew roughly 20% in its most recent reported quarter. Mahaney thinks that Ubers profit margin could rise at a much faster rate than investors expect. The companys current predicament reminds him of where Facebook (FB) was a year ago when its growth rate slowed and it was wrestling with data-privacy troubles. Facebook shares rebounded and ultimately rose 57% in 2019.
Theres a lot of dislocation and fear in the stock, Mahaney says. If [Uber management] can continue to reduce losses and maintain healthy revenue growth rates, I think the Uber shares can materially go up higher.
Sebastian likes mobile-videogame publisher Zynga (ZNGA), pointing to its compelling game pipeline and current game franchises.
In October, the company reported better-than-expected September-quarter earnings results, achieving its best quarterly revenue number in its history. At the time, CEO Frank Gibeau told Barrons that he did not see any large negative impact from the recently released Apple Arcade gaming service.
Zynga has done a good job creating a portfolio of [internet enabled] live services, Sebastian says. It means that, with scale, it will lead to more profitability and more visibility.
Longer term, the analyst is also excited about further advances in artificial intelligence and computing that could spur new waves of growth for technology companies in the new decade.
Real machine learning is possible in the years ahead, where computers thoughtfully and intelligently solve problems, he says. Within the grasp of the next 10 years, Id say quantum computing is very exciting because it will massively increase computational capability.
Sebastian thinks that over time quantum computing may be able to achieve breakthroughs in medical research and other data-intensive applications. Quantum is a new paradigm of computer processing where bits of information can hold multiple values, versus the 0 and 1 binary values of traditional computing.
Despite their optimism, both Mahaney and Sebastian acknowledged that regulatory scrutiny of Big Tech is a risk this year. Government agencies have been investigating the major internet companies competition practices.
But regulators bark will probably be bigger than their bite, Sebastian says, and the likely bigger risk is management distraction, versus actual regulatory action or legislation.
He says the new decade will bring a new Roaring 20s for technology, similar to the 1920s for the U.S. economy. Investors should bet on companies that can benefit from innovations.
Write to Tae Kim at tae.kim@barrons.com
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The 2020s: An NJIT researcher gives us a glimpse at the future of technology – NJ.com
Posted: at 5:47 am
By Atam Dhawan
As our civilization evolves, so do our expectations of technology. Together, they demonstrate how dramatic advances in robots, nanotechnology-enabled sensors and high-powered computing will continue to change and evolve our society. Importantly, many of these technologies, including smart robots, point-of-care devices and machine intelligence, will empower individuals to enjoy their lives more purposefully.
Here is my list of new goalposts for the next decade in three spheres: health care, environmental sustainability and technology-assisted living.
Healthcare:
Sustainable Environment:
Technology-Assisted Living:
Atam Dhawan is the senior vice provost for research at NJIT, a distinguished professor of electrical and computer engineering and an inventor. With several issued patents, some commercialized, Dhawan was inducted into the National Academy of Inventors in 2015 for his work on point-of-care technologies in health care. He serves as the chair of the National Institutes of Healths point-of-care research network.
The Star-Ledger/NJ.com encourages submissions of opinion. Bookmark NJ.com/Opinion. Follow us on Twitter @NJ_Opinion and on Facebook at NJ.com Opinion. Get the latest news updates right in your inbox. Subscribe to NJ.coms newsletters.
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The Quantum Computing Decade Is ComingHeres Why You Should Care – Observer
Posted: December 18, 2019 at 9:36 pm
Googles Sycamore quantum processor. Erik Lucero, Research Scientist and Lead Production Quantum Hardware
Multiply 1,048,589 by 1,048,601, and youll get 1,099,551,473,989. Does this blow your mind? It should, maybe! That 13-digit prime number is the largest-ever prime number to be factored by a quantum computer, one of a series of quantum computing-related breakthroughs (or at least claimed breakthroughs) achieved over the last few months of the decade.
An IBM computer factored this very large prime number about two months after Google announcedthat it had achieved quantum supremacya clunky term for the claim, disputed by its rivals including IBM as well as others, that Google has a quantum machine that performed some math normal computers simply cannot.
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An arcane field still existing mostly in the theoretical, quantum computers have done enough recently and are commanding enough very real public and private resources to be deserving of your attentionnot the least of which is because if and when the Chinese government becomes master of all your personal data, sometime in the next decade, it will be because a quantum computer cracked the encryption.
Building the quantum computer, it is said, breathlessly, is a race to be won, as important as being the first in space (though, ask the Soviet Union how that worked out) or fielding the first workable atomic weapon (seems to be going OK for the U.S.).
And so here is a postwritten in terms as clear and simple as this human could mustersumming up these recent advances and repeating other experts predictions that the 2020s appear to be the decade when quantum computers begin to contribute to your life, by both making slight improvements to your map app, and powering artificial intelligence robust and savvy enough to be a real-life Skynet.
First, the requisite introduction to the concept. Normal computers, such as the device you are using to access and display this content, process information in a binary. Everything is either a one, or a zero, or a series of ones and zeroes. On, or off. But what if the zero was simultaneously also a one? (Please exit here for your requisite digression into quantum physics and mechanics.)
The idea that a value can be a zero, or a one, or both at the same time is the quantum principle of superposition. Each superposition is a quantum bit, or qubit. The ability to process qubits is what allows a quantum computer to perform functions a binary computer simply cannot, like computations involving 500-digit numbers. To do so quickly and on demand might allow for highly efficient traffic flow. It could also render current encryption keys mere speedbumps for a computer able to replicate them in an instant.
An artists rendition of Googles Sycamore quantum processor mounted in a cryostat. Forest Stearns, Google AI Quantum Artist in Residence
Why hasnt this been mastered already, whats holding quantum computers back? Particles like photons only exist in quantum states if they are either compressed very, very small or made very, very coldwith analog engineering techniques. What quantum computers do exist are thus resource-intensive. Googles, for example, involves metals cooled (the verb is inadequate) to 460 degrees below zero, to a state in which particles behave in an erratic and random fashion akin to a quantum state.
And as Subhash Kak, the regents professor of electrical and computer engineering at Oklahoma State University and an expert in the field,recently wrote, the power of a quantum computer can be gauged by how many quantum bits, or qubits, it can process. The machines built by Google, Microsoft, Intel, IBM and possibly the Chinese all have less than 100 qubits,he wrote. (In Googles case, the company claims to have created a quantum state of 53 qubits.)
To achieve useful computational performance,according to Kak, you probably need machines with hundreds of thousands of qubits. And what qubits a quantum computer can offer are notoriously unstable and prone to error. They need many of the hard-won fixes and advancements that saw binary computers morph from room-sized monstrosities spitting out punch cards to iPhones.
How fast will that happencan it happen?
Skeptics, doubters, and haters might note that Google first pledged to achieve quantum supremacy (defined as the point in time at which quantum computers are outperforming binary computers) by the end of 2017meaning its achievement was almost two full years behind schedule, and meaning other quantum claims, like Dario Gil of IBMs pledge that quantum computers will be useful for commercial and scientific advantage sometime next year, may also be dismissed or at least subject to deserved skepticism.
Dario Gil, director of IBM Research, stands in front of IBMs Q System One quantum computer on October 18, 2019. Misha Friedman/Getty Images
And those of us who can think only in binary may also find confusion in the dispute between quantum rivals. The calculation performed by Googles Sycamore quantum computer in 200 seconds, the company claimed, would take a normal binary supercomputer 10,000 years to solve. Not so, according to IBM, which asserted that the calculation could be done by a binary computer in two and a half days. Either way, as The New York Times wrote, quantum supremacy is still a very arcane experiment that cant necessarily be applied to other things. Googles breakthrough might be the last achievement for a while.
But everybody is tryingincluding the U.S. government, which is using your money to do it. Commercial spending on quantum computing research is estimated to reach hundreds of millions of dollars sometime in the next decade. A year ago, spooked and shamed by what appeared to be an unanswered flurry of quantum progress in China, Congress dedicated $1.2 billion to the National Quantum Initiative Act, money specifically intended to boost American-based quantum computing projects. According to Bloomberg, China may have already spent 10 times that.
If you walk away with nothing else, know that quantum computer spending is very real, even if the potential is theoretical.
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Ford Teams with Microsoft to Apply Quantum Principles to Reduce… – RIDE by Kelley Blue Book
Posted: at 9:36 pm
Anyone who uses a mapping program such as Google Maps, Apple Maps or Waze, knows that the shortest route often leads to gridlock. Thats because those programs calculate in a vacuum in whats considered selfish routing. The current algorithms dont account for other drivers making similar requests, so everyone ends up trying to beat traffic using similar if not the same route.
The current technology just cant handle the complex calculations necessary to coordinate traffic on a large scale. But, what if another computational method could take into consideration those other drivers?
In an article on Medium, Dr. Ken Washington, Chief Technology Officer, Ford Motor Company, discusses how Ford and Microsoft scientists teamed up in a research pilot to leverage quantum-inspired technology. Through simulations of thousands of vehicles, they examined its impact on congestion.
Quantum technology, which relies upon quantum physics, is an emerging field of research thats attempting to take advantage of atoms and subatomic particles special properties. Traditional computers process information in binary code, storing data and performing calculations by assigning values of one or zero, known as bits.
Quantum computers crunch data using qubits, which can assign values of one and zero at the same time, enabling faster computational speed. Qubits allow for consideration of other vehicles in route requests to optimize traffic. However, traditional computers just dont have the capacity to make those computations in a timely fashion, and quantum computers are still in development.
Despite the fact that theres no qubit-crunching hardware available yet, Ford and Microsofts researchers teamed up in 2018 to develop quantum approaches that could run on classical computers, already in use to help reduce Seattles traffic congestion. By simulating some specific features of a quantum computer on non-quantum hardware, the researchers were able to create some powerful algorithms.
While were still in the early stages of quantum computing development, Washington said in the article, encouraging progress has been made that can help us take what weve learned in the field and start to apply it to problems we want to solve today, while scaling to more complex problems tomorrow.
The researchers tested the algorithm in several simulated scenarios, including one with 5,000 vehicles across Metro Seattle choosing from 10 different route choices simultaneously. The results were impressive. In just 20 seconds, the algorithm suggested routes resulting in a 73 percent decrease in congestion and 8 percent reduction in commute time. That translates to more than 55,000 hours saved in congestion.
By taking what weve learned about quantum computing and bringing it to hardware thats already available, we dont have to wait until quantum computers are deployed on a wide scale to take advantage of the technology, said Julie Love, Microsofts senior director for quantum computing, in the article.
From the promising research, quantum technology looks to be a powerful tool in the arsenal for balancing traffic flow, reducing pollution and soothing the frayed nerves of city drivers.
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Intel Achieves Milestone in Quantum Practicality with ‘Horse Ridge’ – Database Trends and Applications
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Intel Labs has unveiled what it believes to be a first-of-its-kind cryogenic control chip code-named Horse Ridge that is aimed at speeding up the development of full-stack quantum computing systems.
According to Intel, Horse Ridge will enable control of multiple quantum bits (qubits) and set a clear path toward scaling larger systems a major milestone on the path to quantum practicality.
Developed together with Intels research collaborators at QuTech, a partnership between TU Delft and TNO (Netherlands Organization for Applied Scientific Research), Horse Ridge is fabricated using Intels 22nm FinFET Low Power (22FFL) technology. In-house fabrication of these control chips at Intel will dramatically accelerate the companys ability to design, test and optimize a commercially viable quantum computer.
Quantum computers promise the potential to tackle problems that conventional computers cant handle by leveraging a phenomena of quantum physics that allows qubits to exist in multiple states simultaneously. As a result, qubits can conduct a large number of calculations at the same time dramatically speeding up complex problem-solving.
While there has been a lot of emphasis on the qubits themselves, the ability to control many qubits at the same time had been a challenge for the industry," said Jim Clarke, Intels director of Quantum Hardware. "Intel recognized that quantum controls were an essential piece of the puzzle we needed to solve in order to develop a large-scale commercial quantum system. Thats why we are investing in quantum error correction and controls. With Horse Ridge, Intel has developed a scalable control system that will allow us to significantly speed up testing and realize the potential of quantum computing.
Intel says that in the race to realize the potential of quantum computers, researchers have largely focused extensively on qubit fabrication, building test chips that demonstrate the exponential power of a small number of qubits operating in superposition.
However, it says, in early quantum hardware developments including design, testing and characterization of Intels silicon spin qubit and superconducting qubit systems it has identified a major bottleneck toward realizing commercial-scale quantum computing: interconnects and control electronics.
With Horse Ridge, Intel says it is introducing an elegant solution that will enable the company to control multiple qubits and set a clear path toward scaling future systems to larger qubit counts a major milestone on the path to quantum practicality.
For more information, go to http://www.intel.com.
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Latest Innovations in Biofuels, Cancer Treatment, Water Treatment, Fireproofing Forests, Fuel Cell Membranes, and Quantum Computing, 2019 Research…
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This edition of the Inside R&D TechVision Opportunity Engine (TOE) features retina drug development and self-focussing glasses that can fight presbyopia.
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