Английская Википедия:Cray XC50
Материал из Онлайн справочника
Перейти к навигацииПерейти к поиску
Шаблон:Short description The Cray XC50 is a massively parallel multiprocessor supercomputer manufactured by Cray.[1] The machine can support Intel Xeon processors, as well as Cavium ThunderX2 processors, Xeon Phi processors and NVIDIA Tesla P100 GPUs.[2] The processors are connected by Cray's proprietary "Aries" interconnect, in a dragonfly network topology.[1] The XC50 is an evolution of the XC40, with the main difference being the support of Tesla P100 processors and the use of Cray software release CLE 6 or 7.[3]
Deployed Cray XC50 systems
India
- Indian Institute of Technology, Bombay (IITB) has deployed a Cray XC50 system named Spacetime with a peak performance of 1 petaflops coupled with Cray ClusterStor L300 Lustre storage system.[4]
Japan
- The Japanese National Institutes for Quantum and Radiological Science and Technology has deployed on 2018 26th July a XC50 to support the ITER fusion project.[5] At deployment, it will not be as fast as the Swiss Piz Daint computer; however, it is predicted as one of the top 30 supercomputers in the world, and the fastest available to fusion researchers.[5]
- The Japan Meteorological Agency is planning to deploy 2 Cray XC50s to help with weather forecasting.[6] The systems will be deployed with the assistance of Cray and Hitachi.
- The Center for Computational Astrophysics at the National Astronomical Observatory of Japan have deployed a XC50 named ATERUI II, named after a Japanese chief.[7][8][9] It has 40,200 Xeon cores, with a peak performance of 3.087 petaflops.[8][10]
- The Railway Technical Research Institute (RTRI) will install five XC50 cabinets and a 720 TB Cray ClusterStor L300 for storage to gain insights on rail transportation. This is their third Cray machine after acquiring an XC30 and CS300, both in 2013.[11]
- Yokohama City University has selected the air-cooled XC50-AC for life sciences research.[12]
New Zealand
- New Zealand Science Infrastructure (NeSI) is deploying a XC50 at their High Performance Computing Facility in Wellington.[13]
South Korea
- The Institute for Basic Science (IBS) is installing a 1.43-petaflop XC50, named Aleph, for climate physics research.[14][11][15][16]
Switzerland
- The Swiss National Supercomputing Centre in Lugano has a 361,760-core XC50 called Piz Daint.[17] This has been upgraded from a Cray XC30 and Cray XC40 configurations.
United Kingdom
- Cray is developing a XC50 system with ARM processors called Isambard.[18][19] This will be used for a consortium of Bristol, Bath, Cardiff and Exeter universities.[19]
References
External links
- ↑ 1,0 1,1 Ошибка цитирования Неверный тег
<ref>
; для сносок2016-tech-report
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2017-top-500-ARM
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2016-top-500
не указан текст - ↑ Шаблон:Cite web
- ↑ 5,0 5,1 Ошибка цитирования Неверный тег
<ref>
; для сносок2018-engadget
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2018-inside-hpc
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2018-CFCA-ATERUI-II
не указан текст - ↑ 8,0 8,1 Ошибка цитирования Неверный тег
<ref>
; для сносок2018-inside-hpc-aterui-II
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2018-top-500-ATERUI-II
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2018-popular-mechanics-aterui
не указан текст - ↑ 11,0 11,1 Шаблон:Cite web
- ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2017-cray-press-release
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2017-inside-hpc-nz
не указан текст - ↑ Шаблон:Cite web
- ↑ Шаблон:Cite web
- ↑ Шаблон:Cite web
- ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокtop-500-piz-daint
не указан текст - ↑ Ошибка цитирования Неверный тег
<ref>
; для сносок2017-next-platform
не указан текст - ↑ 19,0 19,1 Ошибка цитирования Неверный тег
<ref>
; для сносок2018-top-500-ThunderX2-release
не указан текст