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IBM’s Watson Goes Cybersecurity

May 23, 2016 by  
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IBM Security has announced a new year-long research project through which it will partner with eight universities to help train its Watson artificial intelligence system to tackle cybercrime.

Knowledge about threats is often hidden in unstructured sources such as blogs, research reports and documentation, said Kevin Skapinetz, director of strategy for IBM Security.

“Let’s say tomorrow there’s an article about a new type of malware, then a bunch of follow-up blogs,” Skapinetz explained. “Essentially what we’re doing is training Watson not just to understand that those documents exist, but to add context and make connections between them.”

Over the past year, IBM Security’s own experts have been working to teach Watson the “language of cybersecurity,” he said. That’s been accomplished largely by feeding it thousands of documents annotated to help the system understand what a threat is, what it does and what indicators are related, for example.

“You go through the process of annotating documents not just for nouns and verbs, but also what it all means together,” Skapinetz said. “Then Watson can start making associations.”

Now IBM aims to accelerate the training process. This fall, it will begin working with students at universities including California State Polytechnic University at Pomona, Penn State, MIT, New York University and the University of Maryland at Baltimore County along with Canada’s universities of New Brunswick, Ottawa and Waterloo.

Over the course of a year, the program aims to feed up to 15,000 new documents into Watson every month, including threat intelligence reports, cybercrime strategies, threat databases and materials from IBM’s own X-Force research library. X-Force represents 20 years of security research, including details on 8 million spam and phishing attacks and more than 100,000 documented vulnerabilities.

Watson’s natural language processing capabilities will help it make sense of those reams of unstructured data. Its data-mining techniques will help detect outliers, and its graphical presentation tools will help find connections among related data points in different documents, IBM said.

Ultimately, the result will be a cloud service called Watson for Cyber Security that’s designed to provide insights into emerging threats as well as recommendations on how to stop them.

Source-http://www.thegurureview.net/computing-category/ibms-watson-to-get-schooled-on-cybersecurity.html

U.S. Wants To Help Supercomputer Makers

March 1, 2016 by  
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Five of the top 12 high performance computing systems in the world are owned by U.S. national labs. But they are beyond reach, financially and technically, for many within the computing industry, even larger ones.

That’s according to U.S. Department of Energy (DOE) officials, who run the national labs. A new program aims to connect manufacturers with supercomputers and the expertise to use them.

This program provides $3 million, initially, for 10 industry projects, the DOE has announced. Whether the program extends into future fiscal years may well depend on Congress.

The projects are all designed to improve efficiency, product development and energy use.

For instance, Procter & Gamble will get help to reduce the paper pulp in products by 20%, “which could result in significant cost and energy savings” in this energy- intensive industry, according to the project description.

Another firm, ZoomEssence, which produces “powder ingredients that capture all the key sensory components of a liquid,” will work to optimize the design of a new drying method using HPC simulations, according to the award description.

Some other projects in the initial implementation of what is being called HPC4Mfg (HPC for Manufacturing) includes an effort to help Global Foundriesoptimize transistor design.

In another, the Ohio Supercomputer Center and the Edison Welding Institute will develop a welding simulation tool.

The national labs not only have the hardware; “more importantly the labs have deep expertise in using HPC to help solve complex problems,” said Donna Crawford, the associate director of computation at Lawrence Livermore National Laboratory, in a conference call. They have the applications as well, she said.

HPC can be used to design and prototype products virtually that otherwise might require physical prototypes. These systems can run simulations and visualizations to discover, for instance, new energy-efficient manufacturing methods.

Source-http://www.thegurureview.net/computing-category/u-s-wants-to-help-supercomputer-makers.html

Malware Turns Computers Into Cellular Antenna

August 19, 2015 by  
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A team of Israeli researchers have improved on a way to steal data from air-gapped computers, thought to be safer from attack due to their isolation from the Internet.

They’ve figured out how to turn the computer into a cellular transmitter, leaking bits of data that can be picked up by a nearby low-end mobile phone.

While other research has shown it possible to steal data this way, some of those methods required some hardware modifications to the computer. This attack uses ordinary computer hardware to send out the cellular signals.

Their research, which will be featured next week at the 24th USENIX Security Symposium in Washington, D.C., is the first to show it’s possible to steal data using just specialized malware on the computer and the mobile phone.

“If somebody wanted to get access to somebody’s computer at home — let’s say the computer at home wasn’t per se connected to the Internet — you could possibly receive the signal from outside the person’s house,” said Yisroel Mirsky, a doctoral student at Ben-Gurion University and study co-author.

The air-gapped computer that is targeted does need to have a malware program developed by the researchers installed. That could be accomplished by creating a type of worm that infects a machine when a removable drive is connected. It’s believed this method was used to deliver Stuxnet, the malware that sabotaged Iran’s uranium centrifuges.

The malware, called GSMem, acts as a transmitter on an infected computer. It creates specific, memory-related instructions that are transmitted between a computer’s CPU and memory, generating radio waves at GSM, UMTS and LTE frequencies that can be picked up by a nearby mobile device.

The GSMem component that runs on a computer is tiny. “Because our malware has such a small footprint in the memory, it would be very difficult and can easily evade detection,” said Mordechai Guri, also a doctoral student at Ben-Gurion.

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Office 365 Goes Video Streaming

December 3, 2014 by  
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Microsoft unveiled Office 365 Video, a YouTube-like streaming service where enterprises and large organizations can post in-house video content for communication and training.

“Office 365 Video provides organizations with a secure, company-wide destination for posting, sharing and discovering video content,” said Mark Kashman, a senior product manager with the Office 365 team, in a blog posting.

Kashman touted Video as a tool for internal communications, citing the examples of new-employee orientation, management messaging and worker training. Employees will also be able to contribute to a “Community” section, though most companies will probably frown on cat antic clips.

The service rolls out over the next few days to companies that have registered for Office 365′s First Release early distribution program, then through early 2015 to others.

Video will be available only to subscribers of Office 365′s plans for enterprises — E1 through E4 — and universities (A2 through A4). It will not be offered to consumer subscribers or firms with small business-oriented plans like Business Essentials, Business and Business Premium.

Kashman also said Office 365 plans for government agencies will get Video at some point, but he did not proffer a timeline.

The other requirement is SharePoint Online, an off-premises component of the enterprise and academic plans, but missing from the increasingly popular Office 365 ProPlus, the rent-not-buy plan used by organizations that have decided to retain their back-end services, like SharePoint and Exchange, on premises.

Although Office 365 Video has elements of consumer streaming services like Google’s YouTube, it’s strictly an in-house affair: It will be available only to employees, and then only those whom IT administrators have assigned access rights.

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MDM Coming To Office 365

November 10, 2014 by  
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Microsoft will rollout mobile device management (MDM) capabilities to Office 365 in 2015, making it easier for firms to manage corporate data across a range of mobile devices, including those running iOS and Android as well as Windows.

Microsoft unveiled the updates coming to its Office 365 cloud-delivered productivity suite in 2015 at its TechEd Europe conference.

These will enable customers to apply security policies against devices that connect to Office 365 to ensure that email and documents can be accessed only by approved devices, plus the ability to remotely wipe Office 365 data if necessary.

Julia White, Microsoft general manager for Office 365, said that the updates will enable customers to offer “conditional access” to Office documents and email, such as ensuring that any device used by employees has not been jailbroken or rooted, which could potentially pose a security risk.

Administrators will be able to set policies directly from the Office 365 administration portal, and enforce the use of a Pin to secure access to the device. Any wipe of Office 365 content will not affect the user’s personal data, White added.

These MDM features coming to Office 365 are actually powered by Microsoft’s Intune cloud-based management service and are a subset of Intune’s capabilities, the firm disclosed.

Intune itself is also getting some upgrades that will enable customers to benefit from additional security features if they also subscribe to Intune.

These will include data leak prevention measures that enable policies to be applied against managed applications, preventing users from copying and pasting data from an Office 365 app to another, for example, or copying files from Office 365 to elsewhere on the device.

While these capabilities are built in to Office 365, Microsoft will also enable this to be extended to other applications using Intune app wrapper functionality, White said.

White also confirmed that Microsoft is working on an Android version of the Office for iPad suite of mobile productivity tools that the firm announced for Apple’s tablet platform earlier this year.

Microsoft’s Office announcement comes amid speculation that the firm will release Office for Android next month.

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Google Continues A.I. Expansion

November 4, 2014 by  
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Google Inc is growing its artificial intelligence area, hiring more than half a dozen leading academics and experts in the field and announcing a partnership with Oxford University to “accelerate” its efforts.

Google will make a “substantial contribution” to establish a research partnership with Oxford’s computer science and engineering departments, the company said on Thursday regarding its work to develop the intelligence of machines and software, often to emulate human-like intelligence.

Google did not provide any financial details about the partnership, saying only in a post on its blog that it will include a program of student internships and a series of joint lectures and workshops “to share knowledge and expertise.”

Google, which is based in Mountain View, California, is building up its artificial intelligence capabilities as it strives to maintain its dominance in the Internet search market and to develop new products such as robotics and self-driving cars. In January Google acquired artificial intelligence company Deep Mind for $400 million according to media reports.

The new hires will be joining Google’s Deep Mind team, including three artificial intelligence experts whose work has focused on improving computer visual recognition systems. Among that team is Oxford Professor Andrew Zisserman, a three-time winner of the Marr Prize for computer vision.

The four founders of Dark Blue Labs will also be joining Google where they will be will be leading efforts to help machines “better understand what users are saying to them.”

Google said that three of the professors will hold joint appointments at Oxford, continuing to work part time at the university.

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App Stores For Supercomputers Enroute

December 13, 2013 by  
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A major problem facing supercomputing is that the firms that could benefit most from the technology, aren’t using it. It is a dilemma.

Supercomputer-based visualization and simulation tools could allow a company to create, test and prototype products in virtual environments. Couple this virtualization capability with a 3-D printer, and a company would revolutionize its manufacturing.

But licensing fees for the software needed to simulate wind tunnels, ovens, welds and other processes are expensive, and the tools require large multicore systems and skilled engineers to use them.

One possible solution: taking an HPC process and converting it into an app.

This is how it might work: A manufacturer designing a part to reduce drag on an 18-wheel truck could upload a CAD file, plug in some parameters, hit start and let it use 128 cores of the Ohio Supercomputer Center’s (OSC) 8,500 core system. The cost would likely be anywhere from $200 to $500 for a 6,000 CPU hour run, or about 48 hours, to simulate the process and package the results up in a report.

Testing that 18-wheeler in a physical wind tunnel could cost as much $100,000.

Alan Chalker, the director of the OSC’s AweSim program, uses that example to explain what his organization is trying to do. The new group has some $6.5 million from government and private groups, including consumer products giant Procter & Gamble, to find ways to bring HPC to manufacturers via an app store.

The app store is slated to open at the end of the first quarter of next year, with one app and several tools that have been ported for the Web. The plan is to eventually spin-off AweSim into a private firm, and populate the app store with thousands of apps.

Tom Lange, director of modeling and simulation in P&G’s corporate R&D group, said he hopes that AweSim’s tools will be used for the company’s supply chain.

The software industry model is based on selling licenses, which for an HPC application can cost $50,000 a year, said Lange. That price is well out of the reach of small manufacturers interested in fixing just one problem. “What they really want is an app,” he said.

Lange said P&G has worked with supply chain partners on HPC issues, but it can be difficult because of the complexities of the relationship.

“The small supplier doesn’t want to be beholden to P&G,” said Lange. “They have an independent business and they want to be independent and they should be.”

That’s one of the reasons he likes AweSim.

AweSim will use some open source HPC tools in its apps, and are also working on agreements with major HPC software vendors to make parts of their tools available through an app.

Chalker said software vendors are interested in working with AweSim because it’s a way to get to a market that’s inaccessible today. The vendors could get some licensing fees for an app and a potential customer for larger, more expensive apps in the future.

AweSim is an outgrowth of the Blue Collar Computing initiative that started at OSC in the mid-2000s with goals similar to AweSim’s. But that program required that users purchase a lot of costly consulting work. The app store’s approach is to minimize cost, and the need for consulting help, as much as possible.

Chalker has a half dozen apps already built, including one used in the truck example. The OSC is building a software development kit to make it possible for others to build them as well. One goal is to eventually enable other supercomputing centers to provide compute capacity for the apps.

AweSim will charge users a fixed rate for CPUs, covering just the costs, and will provide consulting expertise where it is needed. Consulting fees may raise the bill for users, but Chalker said it usually wouldn’t be more than a few thousand dollars, a lot less than hiring a full-time computer scientist.

The AweSim team expects that many app users, a mechanical engineer for instance, will know enough to work with an app without the help of a computational fluid dynamics expert.

Lange says that manufacturers understand that producing domestically rather than overseas requires making products better, being innovative and not wasting resources. “You have to be committed to innovate what you make, and you have to commit to innovating how you make it,” said Lange, who sees HPC as a path to get there.

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Researchers Build Flying Robot

December 4, 2013 by  
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Researchers say they have assembled a flying robot. It’s not designed to fly like a bird or an insect, but was built to simulate the movements of a swimming jellyfish.

Scientists at New York University say they built the small, flying vehicle to move like the boneless, pulsating, water-dwelling jellyfish.

Leif Ristroph, a post-doctoral student at NYU and a lead researcher on the project, explained that previous flying robots were based on the flight of birds or insects, such as flies.

Last spring, for example, Harvard University researchers announced that they had built an insect-like robot that flies by flapping its wings. The flying robot is so small it has about 1/30th the weight of a U.S. penny.

Before the Harvard work was announced, researchers at the University of Sheffield and the University of Sussex in England worked together to study thebrains of honey bees in an attempt to build an autonomous flying robot.

By creating models of the systems in a bee’s brain that control vision and sense of smell, scientists hope to build a robot that would be able to sense and act as autonomously as a bee.

The problem with those designs, though, is that the flapping wing of a fly is inherently unstable, Ristroph noted.

“To stay in flight and to maneuver, a fly must constantly monitor its environment to sense every gust of wind or approaching predator, adjusting its flying motion to respond within fractions of a second,” Ristroph said. “To recreate that sort of complex control in a mechanical device — and to squeeze it into a small robotic frame — is extremely difficult.”

To get beyond those challenges, Ristroph built a prototype robot that is 8 centimeters wide and weighs two grams. The robot flies by flapping four wings arranged like petals on a flower that pulsate up and down, resembling the flying motion of a moth.

The machine, according to NYU, can hover and fly in a particular direction.

There is more work still to be done. Ristroph reported that his prototype doesn’t have a battery but is attached to an external power source. It also can’t steer, either autonomously or via remote control.

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Stanford Develops Carbon Nanotubes

October 17, 2013 by  
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Researchers at Stanford University have demonstrated the first functional computer constructed using only carbon nanotube transistors.

Scientists have been experimenting with transistors based on carbon nanotubes, or CNTs, as substitutes for silicon transistors, which may soon hit their physical limits.

The rudimentary CNT computer is said to run a simple operating system capable of multitasking, according to a synopsis of an article published in the journal Nature.

Made of 178 transistors, each containing between 10 and 200 carbon nanotubes, the computer can do four tasks summarized as instruction fetch, data fetch, arithmetic operation and write-back, and run two different programs concurrently.

The research team was led by Stanford professors Subhasish Mitra and H.S. Philip Wong.

“People have been talking about a new era of carbon nanotube electronics moving beyond silicon,” Mitra said in a statement. “But there have been few demonstrations of complete digital systems using [the] technology. Here is the proof.”

IBM last October said its scientists had placed more than 10,000 transistors made of nano-size tubes of carbon on a single chip. Previous efforts had yielded chips with just a few hundred carbon nanotubes.

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Microsoft Raises Office Price

February 28, 2013 by  
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Microsoft has quietly increased prices of Office for the Mac as much as 17% and stopped selling multi-license packages of the application suite.

The move puts Office for Mac 2011 on the same pricing schedule as the new Office 2013 for Windows. The price increases and the disappearance of the multi-license bundles also makes Microsoft’s Office 365, a software-by-subscription deal the company has aggressively pushed, more competitive with traditional “perpetual” licenses.

It’s not clear when Microsoft raised prices. The oldest search engine cache Computerworld found with the new prices was Feb. 2, so the company boosted them before then, likely on Jan. 29, the day it launched Office 2013 and Office 365 Home Premium. Microsoft did not mention the changes to Office for Mac in its press releases that day, or otherwise publicize the move on its Mac-specific website.

The single-license Office for Mac Home & Student now costs $140, a 17% increase from the previous price of $120. Office for Mac Home & Business, an edition that adds the Outlook email client to Home & Student’s Excel, PowerPoint and Word, runs $220, or 10% higher than the older $200 price.

The new prices are identical to those of Office 2013 for Windows, as are the percentage increases.

Buyers can still find Office for Mac 2011 at the older, lower prices, however. Although Microsoft has boosted prices on its online store — as has Apple’s e-store, which also sells the suite — other retailers have not yet joined them.

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