Showing posts with label supercomputer. Show all posts
Showing posts with label supercomputer. Show all posts

Saturday, April 20, 2013

Adapteva shows off production Parallella mini 'supercomputer' boards

Adapteva shows of its first production Parallella mini supercomputer boards


With its ambitious Parallella computing project funded on Kickstarter since last October, Adapteva's now showing off its first mass-production boards. These Rasberry Pi-esque devices are capable of supercomputer-like parallel computing performance thanks to power-sipping Epiphany multi-core accelerators. As proposed, both the $99 13GHz 16-core (26 gigaflops) and $199 45GHz 64-core accelerator (90 gigaflops) variants make an appearance in the pictures. The company is tweaking this initial batch of 10 to test various functionalities, with its current update noting that getting Linux to boot off the boards is the next step in testing. Final units are still slated to arrive on doorsteps during the summer, and hardware schematics will eventually be available as open source-info -- after all, the Parallella has always been pitched as an open undertaking. Those enthused by circuits and the boards they live on will find a path to more info at the source link.


Via: Tech2


Source: Adapteva (Kickstarter), Parallella.org

Tuesday, April 16, 2013

Titan supercomputer to be loaded with 'world's fastest' storage system

Titan supercomputer to be loaded with 'world's fastest' storage system


If you figured Titan's title of the world's most powerful supercomputer would give the folks at Oakridge National Laboratory reason to rest on their laurels, you'd be mistaken. The computer is set to have its fleet of 18,688 NVIDIA K20 GPUs and equal number of AMD Opteron processors paired with what's said to be the planet's speediest storage system, making its file setup six times faster and giving it three times more capacity. Dubbed Spider II, the new hardware will endow the number cruncher with a peak performance of 1.4 terabytes a second and 40 petabytes of storage spread across 20,000 disk drives. Behind the refresh are 36 of Datadirect Networks' SFA12K-40 systems, which each pack 1.12PB of capacity. For more on the herculean rig's upgrade, hit the jump for the press release.

Show full PR text

DATADIRECT NETWORKS TO BUILD WORLD'S FASTEST STORAGE SYSTEM FOR TITAN, WORLD'S MOST POWERFUL SUPERCOMPUTER


-- New Oak Ridge National Laboratory Storage System Will Deliver Over One Terabyte Per Second in Throughput to Drive Radical Advances in Science and Big Data Analysis, Essential to DOE and Office of Science Missions --



Lustre User Group Conference 2013, SAN DIEGO, CALIF. – April 16, 2013

News Facts
In support of its new Titan supercomputer, Oak Ridge National Laboratory (ORNL) has selected DataDirect Networks (DDN) to build the world's fastest storage system to power the fastest supercomputer in the world.


ORNL is a national multi-program research and development facility managed by UT-Battelle for the U.S. Department of Energy. The Oak Ridge Leadership Computing Facility (OLCF) was established at Oak Ridge National Laboratory in 2004 with the mission of providing leadership computing for scientists working on some of the world's most pressing problems.


Titan is designed to deliver a peak capability of over 27,000 trillion calculations per second, or 27 petaflops, a system that is over ten times more powerful than previous generations of ORNL computers.


For the growing number of problems where experiments are impossible, dangerous, or inordinately costly, advances of this compute magnitude offer the benefit of immediate and transformative insights in energy, national security, the environment and the economy, as well as to answer fundamental scientific questions.


Using DDN's SFA12K-40 storage systems as the backbone for Spider II, this new file storage system is designed with 40 petabytes of raw capacity and is capable of ingesting, storing, processing and distributing research data at unprecedented speed. This amount of storage capacity is equivalent to more than 227,000 miles of stacked books – or the distance from ORNL's facility in Oak Ridge, TN to the moon – and enables ORNL to dramatically increase Titan's computational efficiency and deliver vastly more accurate predictive models than ever before.


As the de facto standard in storage for the world's leading supercomputers, DDN continues to push the frontiers of science and technology from laptop to petaflop, building on its $100M investment in extreme scale computing and commitment to the DOE's FastForward program to pave the road to exascale.


DDN Sets Standard for High Performance Computing

After a competitive review of scale out storage alternatives, ORNL selected the DDN SFA12K-40 as the high-throughput building block for its Lustre® parallel file system. Once installed, the platform will deliver performance in excess of 10x what is achievable with contemporary scale-out NAS systems. Building on a decade of ORNL and DDN optimizations for the Lustre file system, the DDN system will be configured with Lustre performance of over one terabyte per second to meet the demands of Titan's 299,008 CPU cores. The ORNL Spider II configuration from DDN includes: 36 DDN SFA12K-40 systems, each with 1.12PB of raw storage capacity; Over 40PB of raw capacity in only 36 data center racks; A combined 20,000 disk drives in a single system. The combination of DDN's and ORNL's expertise in scaling Lustre in production environments will enable Titan to perform approximately six times faster with three times the capacity of its predecessor, Spider. Architecturally unique in many ways, Titan's power, scalability and efficiency serve as a showcase for the requirements of tomorrow as high performance computing (HPC) technologies continue to be adopted across the enterprise for Big Data computing. Both DDN and ORNL will be presenting at the Lustre User Group (LUG) in San Diego, April 16-18. For more on DDN events or to request a consultation at LUG, please visit here.


Supporting Quote


Jean-Luc Chatelain, chief technology officer at DDN:
"The world's toughest questions demand the toughest storage and the fastest technology to drive new levels of scientific insight. DDN has spent the better part of a decade engineering a platform that is built precisely and efficiently for today's Big Data challenges. As applications everywhere – from energy exploration to climate modeling to energy efficient car manufacturing – continue to drive extreme levels of computational simulation and data analytics, we're proud to provide the data storage technology that makes such innovation and economic competitiveness possible. We're honored to continue our long-standing partnership with ORNL today and to be part of the future of Big Data and exascale computing tomorrow."

Buddy Bland, project director for the Oak Ridge Leadership Computing Facility at Oak Ridge National Laboratory:
"When building the world's fastest system for data intensive computing, we carefully considered all aspects of high-throughput I/O infrastructure and how efficient storage platforms can complement our supercomputer's efficiency. The ORNL and DDN teams have worked together to architect a file system designed to enhance the performance of our Titan supercomputer and enable our users to achieve unprecedented simulations and big data insights through massively scalable computing."


Source

Monday, April 1, 2013

IBM Roadrunner retires from the supercomputer race

IBM Roadrunner retires from the supercomputer race


For all the money and effort poured into supercomputers, their lifespans can be brutally short. See IBM's Roadrunner as a textbook example: the 116,640-core cluster was smashing records just five years ago, and yet it's already considered so behind the times that Los Alamos National Laboratory is taking it out of action today. Don't mourn too much for the one-time legend, however. The blend of Opteron and Cell processors proved instrumental to understanding energy flow in weapons while also advancing the studies of HIV, nanowires and the known universe. Roadrunner should even be useful in its last gasps, as researchers will have a month to experiment with the system's data routing and OS memory compression before it's dismantled in earnest. It's true that the supercomputer has been eclipsed by cheaper, faster or greener competitors, including its reborn Cray arch-nemesis -- but there's no question that we'll have learned from Roadrunner's brief moment in the spotlight.


Via: NBC


Source: Los Alamos National Laboratory

Saturday, March 30, 2013

University of Illinois' Blue Waters supercomputer now running around the clock

University of Illinois' Blue Waters supercomputer now running around the clock


Things got a tad hairy for the University of Illinois at Urbana-Champaign's Blue Waters supercomputer when IBM halted work on it in 2011, but with funding from the National Science Foundation, the one-petaflop system is now crunching numbers 24/7. The behemoth resides within the National Center for Supercomputing Applications (NCSA) and is composed of 237 Cray XE6 cabinets and 32 of the XK7 variety. NVIDIA GK110 Kepler GPU accelerators line the inside of the machine and are flanked by 22,640 compute nodes, which each pack two AMD 6276 Interlagos processors clocked at 2.3 GHz or higher. At its peak performance, the rig can churn out 11.61 quadrillion calculations per second. According to the NCSA, all that horsepower earns Blue Waters the title of the most powerful supercomputer on a university campus. Now that it's cranking away around-the-clock, it'll be used in projects investigating everything from how viruses infect cells to weather predictions.

Show full PR text

Blue Waters supercomputer now open for 24/7 science!


Today the Blue Waters supercomputer at the University of Illinois at Urbana-Champaign entered production, meaning the behemoth capable of performing quadrillions of calculations every second and working with quadrillions of bytes of data is now crunching numbers around the clock to help scientists and engineers across the country tackle a wide variety of science and engineering challenges.


Because Blue Waters is among the most powerful supercomputers in the world, and is the most powerful supercomputer on a university campus, it enables scientists to carry out research that would be otherwise impossible. The supercomputer, which was built from Cray hardware, operates at a sustained performance of more than 1 quadrillion calculations per second and is capable of peak performance of 11.61 quadrillion calculations per second. [How big are quadrillions? Check out our guide!]


During a launch celebration at the university's National Center for Supercomputing Applications (NCSA), Gov. Quinn read a proclamation declaring March 28 "Blue Waters Supercomputer Day," encouraging "everyone in the Land of Lincoln to recognize the important role that innovation and technological progress play in the future of our state."


Other speakers during the celebration-including University President Robert Easter, Chancellor Phyllis Wise, and Rep. Dan Lipinski, who serves on the House Committee for Science, Space and Technology-also emphasized the role that Blue Waters and the University of Illinois play in science and engineering discoveries.


Cora Marrett, acting director of the National Science Foundation, the federal agency that provided the deployment and operational funding for Blue Waters, emphasized the supercomputer's potential to fuel discovery and innovation and to benefit society. For example, scientists hope to learn more about how viruses infect the body's cells and to improve predictions of tornadoes and hurricanes, among other diverse projects.


To mark Blue Waters' move to full operations, several scientists launched simulation jobs on Blue Waters, showing the audience how the touch of a keyboard or even a tablet or phone allows them to interact with the supercomputer and begin complex research studies:

Steven Gottlieb, high-energy/sub-atomic physics, Indiana University James Kinter and Cristiana Stan, atmospheric science, George Mason University Brian O'Shea, astrophysics, Michigan State University Klaus Schulten, biophysics, University of Illinois at Urbana-Champaign

For more information about the Blue Waters project, see http://www.ncsa.illinois.edu/BlueWaters/.


Source: National Center for Supercomputing Applications


More Coverage: Slashdot

Tuesday, November 13, 2012

Titan supercomputer leads latest Top 500 list, newly-available Xeon Phi chip cracks top ten

By Donald Melanson posted Nov 12th 2012 7:44PM

The supercomputer formerly known as Jaguar recently got an upgrade that was significant enough to earn it a new moniker, and it turns out that was also enough for it to claim the top stop on the latest Top 500 list of the world's most powerful supercomputers. Now known as Titan, the Cray-developed supercomputer at the Oak Ridge National Laboratory edged out the Lawrence Livermore National Laboratory's Sequoia supercomputer for the number one position, reaching 17.59 Petaflops per second with the aid of 18,688 NVIDIA K20 GPUs and an equal number of AMD Opteron processors. As EE Times notes, however, the other big story with this list is the strong showing for Intel's new Xeon Phi co-processors, which have just starting shipping to customers and have already found their way into seven of the supercomputers on the list, including one in the top ten (the Stampede at the Texas Advanced Computing Center at the University of Texas). You can see how your favorite supercomputer did at the link below.

web coverage

Sourse

World's fastest supercomputer is now the Nvidia-powered Titan

World's fastest supercomputer is now the Nvidia-powered TitanTitanic

The Titan supercomputer has knocked the IMB Sequoia off the top spot to take the title of World's Fastest Supercomputer.

Those who move in the right kinds of circles won't be surprised by this news; advance reports had apparently anticipated Oak Ridge National Laboratory's Titan would take the gold when the Top500 Supercomputer Sites' twice-yearly top 500 supercomputer sites chart was released.

The Titan managed 17.59 Petaflop per second – that's 17.59 quadrillion calculations per second and puts our ability to pat our heads and rub our tummies simultaneously to shame.

But knowing that the Titan has 560,640 processors to its name, including 261,632 Nvidia K20x accelerator cores, makes us feel a little less inadequate. Also, we have souls and organic intelligence.

In June 2012, we reported that the IBM Sequoia was the world's fastest supercomputer but it now sits in second place; the previous number 1, Fujitsu's K computer, now languishes in third.

Not for the likes of you and I are the supercomputers housed in major computing laboratories; rather they are used to simulate nuclear weapons tests and other complicated scientific simulations.

 

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