성공사례
물질의 특성과우주를 탐구하는영국 대학
연구분야
핵연구에서 입자 물리학까지
과제
대형컴퓨터 설비를위한매우 큰 스토리지 솔루션개발
솔루션
EonStor® RAID 시스템이아래와 같은 성능으로어려운 난제를해결했습니다.
- 지속적인 높은 대역폭
- 높은 가용성
- 84TB의 저장 용량 및 추후확장을 위한 설비
- 가격대비 우수한 성능
물질의 특성과우주를 탐구하는영국 대학
SUPERCOMPUTING CHALLENGES
Dr. Roger Jones from Lancaster University’s Department of Physics and a member of the ATLAS experiment led the project and realized that they needed a powerful computing resource combined with large, reliable storage and excellent price/performance to successfully manage this endeavor.
HIGH POWERED STORAGE SOLUTION
The LHC is expected to produce 15 Petabytes (15 million Gigabytes) of physics data annually which needs to be accessible for analysis by physicists around the world. To analyse this data, ClusterVision were selected to design a largescale computer cluster as a cost-effective alternative to traditional supercomputers.
The clusters consist of 209 dual processor computer servers or ‘nodes’ with Intel Xeon EM64T processors. Data storage is provided by 14 of Infortrend’s class-leading EonStor® A16UG1A3-M1 RAID arrays, each equipped with 16 400GB hard disk drives. These subsystems provide high availability by using hot-swappable drives, power supplies, and fan modules. Dr. Matthijs van Leeuwen of ClusterVision commented, “We configured the A16U-G1A3- M1 as RAID 5 for a high level of data integrity. Additionally, the Infortrend RAID subsystems provided a bandwidth that comfortably matches the projected needs of Lancaster University. The Infortrend RAID subsystems proved very easy to integrate with the ClusterVision clusters.”
LARGEST DISK RESOURCE
“Infortrend Europe is excited to be associated with the Lancaster University and the work of Dr. Peter Love on the ATLAS project,” commented Alex Young, Technical Director of Infortrend Europe Ltd. “Our leading-edge RAID storage subsystems are ideally suited to this type of large scale storage.”
ABOUT CLUSTERVISION
ClusterVision are specialists in the design, implementation and support of large-scale computer clusters. ClusterVision’s clustering technology provides an alternative to traditional supercomputing by using a method of connecting multiple computers to form a unified and powerful computing system. By using high-quality commodity computer components and proven open source software technology, our clusters can match the performance and stability of traditional supercomputers for a fraction of the cost. Every ClusterVision cluster is delivered as a fully functional turnkey system with all hardware and software integrated and configured for immediate deployment. Each of our clusters is designed to meet customer's specific computational requirements at maximum performance, maximum reliability, and minimum cost.
For more information, Ms Georgina Ellis, ClusterVision Ltd., 17 Essington House Lytton Grove London SW15 2ET, Tel: +44 (0)870 080 1991, geogina.ellis@clustervision.com
ABOUT THE LHC COMPUTING GRID & THE EGEE PROJECCT
The LHC (Large Hadron Collider) Computing Grid is a flagship Grid project to provide a computational and data intensive grid of resources for collaborative research and scientific exploration, carried forward in partnership with the EGEE (Enabling Grids for eScience in Europe) Project, which is funded through the European Union Framework Programme. For more information go to http://lcg.web.cern.ch/lcg/ and http://public.eu-egee.org.