Workshop on Parallel Computing Institute for Studies in Theoretical Physics and Mathematics School of Math 14 July 2004 کارگاه آموزشي محاسبات موازي پژوهشگاه.

Slides:



Advertisements
Similar presentations
كاربرد شبكه هاي عصبي در شناسايي و مدلسازي سيستمها.
Advertisements

Clusters, Grids and their applications in Physics David Barnes (Astro) Lyle Winton (EPP)
Super Computers By Phuong Vo.
Setting up Small Grid Testbed
Overview of High Performance Computing at KFUPM Khawar Saeed Khan ITC, KFUPM.
Beowulf Supercomputer System Lee, Jung won CS843.
Information Technology Center Introduction to High Performance Computing at KFUPM.
LinkSCEEM-2: A computational resource for the development of Computational Sciences in the Eastern Mediterranean Mostafa Zoubi SESAME SESAME – LinkSCEEM.
Linux Clustering A way to supercomputing. What is Cluster? A group of individual computers bundled together using hardware and software in order to make.
Cluster Technologies University of Macedonia Thessaloniki - Greece Parallel & Distributed Processing Laboratory
Presented by: Yash Gurung, ICFAI UNIVERSITY.Sikkim BUILDING of 3 R'sCLUSTER PARALLEL COMPUTER.
توسعه تکنولزی اطلاعات در دانشگاه فردوسی مشهد دکتر محسن كاهاني دانشگاه فردوسي مشهد
A Comparative Study of Network Protocols & Interconnect for Cluster Computing Performance Evaluation of Fast Ethernet, Gigabit Ethernet and Myrinet.
An Introduction to Princeton’s New Computing Resources: IBM Blue Gene, SGI Altix, and Dell Beowulf Cluster PICASso Mini-Course October 18, 2006 Curt Hillegas.
MASPLAS ’02 Creating A Virtual Computing Facility Ravi Patchigolla Chris Clarke Lu Marino 8th Annual Mid-Atlantic Student Workshop On Programming Languages.
Virtual Machines for HPC Paul Lu, Cam Macdonell Dept of Computing Science.
UNL Computer Science & Engineering Cluster Computing David R. Swanson Beowulf and Bombs.
Linux clustering Morris Law, IT Coordinator, Science Faculty, Hong Kong Baptist University.
HPC Technical Workshop Björn Tromsdorf Product & Solutions Manager, Microsoft EMEA London
Real Parallel Computers. Background Information Recent trends in the marketplace of high performance computing Strohmaier, Dongarra, Meuer, Simon Parallel.
COCOA(1/19) Real Time Systems LAB. COCOA MAY 31, 2001 김경임, 박성호.
مديريت پروژه‌هاي فناوري اطلاعات راه‌حل‌هاي مبتني بر فناوري اطلاعات.
CPP Staff - 30 CPP Staff - 30 FCIPT Staff - 35 IPR Staff IPR Staff ITER-India Staff ITER-India Staff Research Areas: 1.Studies.
Problems of development of high performance infrastructure for scientific center S. Shikota 1, A.Yu.Menshutin 1,2, L. Shchur 1,2 1 Department of Applied.
Real Parallel Computers. Modular data centers Background Information Recent trends in the marketplace of high performance computing Strohmaier, Dongarra,
Cluster Computers. Introduction Cluster computing –Standard PCs or workstations connected by a fast network –Good price/performance ratio –Exploit existing.
Building a High-performance Computing Cluster Using FreeBSD BSDCon '03 September 10, 2003 Brooks Davis, Michael AuYeung, Gary Green, Craig Lee The Aerospace.
Development of High Performance Computing on the Basis of SSCC and СС Intel-SB RAS Development of High Performance Computing on the Basis of SSCC and СС.
SM Advanced Optics & Energy Technology Center Advanced Mirror Technology Small Business Innovative Research Sandy Montgomery/SD71 Blue Line.
Motivation “Every three minutes a woman is diagnosed with Breast cancer” (American Cancer Society, “Detailed Guide: Breast Cancer,” 2006) Explore the use.
Scientific Computing. Overview •Computing and communications resources •New communication and information services •Training.
University of Illinois at Urbana-Champaign NCSA Supercluster Administration NT Cluster Group Computing and Communications Division NCSA Avneesh Pant
Sobolev Showcase Computational Mathematics and Imaging Lab.
Cluster Computers. Introduction Cluster computing –Standard PCs or workstations connected by a fast network –Good price/performance ratio –Exploit existing.
Edgar Gabriel Short Course: Advanced programming with MPI Edgar Gabriel Spring 2007.
Sun Fire™ E25K Server Keith Schoby Midwestern State University June 13, 2005.
HPCVL High Performance Computing Virtual Laboratory Founded 1998 as a joint HPC lab between –Carleton U. (Comp. Sci.) –Queen’s U. (Engineering) –U. of.
José D. Zamora, Sean R. Morriss and Manuela Campanelli.
Laboratório de Instrumentação e Física Experimental de Partículas GRID Activities at LIP Jorge Gomes - (LIP Computer Centre)
Quick Introduction to NorduGrid Oxana Smirnova 4 th Nordic LHC Workshop November 23, 2001, Stockholm.
The II SAS Testbed Site Jan Astalos - Institute of Informatics Slovak Academy of Sciences.
- Rohan Dhamnaskar. Overview  What is a Supercomputer  Some Concepts  Couple of examples.
ARGONNE NATIONAL LABORATORY Climate Modeling on the Jazz Linux Cluster at ANL John Taylor Mathematics and Computer Science & Environmental Research Divisions.
1 Raspberry Pi HPC Testbed By Bradford W. Bazemore Georgia Southern University.
ITEP computing center and plans for supercomputing Plans for Tier 1 for FAIR (GSI) in ITEP  8000 cores in 3 years, in this year  Distributed.
CCS Overview Rene Salmon Center for Computational Science.
Computing Resources at Vilnius Gediminas Technical University Dalius Mažeika Parallel Computing Laboratory Vilnius Gediminas Technical University
On High Performance Computing and Grid Activities at Vilnius Gediminas Technical University (VGTU) dr. Vadimas Starikovičius VGTU, Parallel Computing Laboratory.
National HEP Data Grid Project in Korea Kihyeon Cho Center for High Energy Physics (CHEP) Kyungpook National University CDF CAF & Grid Meeting July 12,
Distributed Programming CA107 Topics in Computing Series Martin Crane Karl Podesta.
What is MCSR? Who is MCSR? What Does MCSR Do? Who Does MCSR Serve? What Kinds of Accounts? Why Does Mississippi Need Supercomputers? What Kinds of Research?
By Chi-Chang Chen.  Cluster computing is a technique of linking two or more computers into a network (usually through a local area network) in order.
Construction of Computational Segment at TSU HEPI Erekle Magradze Zurab Modebadze.
Cluster Computers. Introduction Cluster computing –Standard PCs or workstations connected by a fast network –Good price/performance ratio –Exploit existing.
08 July 1997, 11:45 UT, GOES-8 IR image
CLAN A High Performance, Dual Operating System Compute Server Based on Intel Processors Kathy Benninger John Kochmar Mike Levine Juan Leon Paul Nowoczynski.
CNAF - 24 September 2004 EGEE SA-1 SPACI Activity Italo Epicoco.
High Energy Physics at the OU Supercomputing Center for Education & Research Henry Neeman, Director OU Supercomputing Center for Education & Research University.
LinkSCEEM-2: A computational resource for the development of Computational Sciences in the Eastern Mediterranean Mostafa Zoubi SESAME Outreach SESAME,
OUHEP STATUS Hardware OUHEP0, 2x Athlon 1GHz, 2 GB, 800GB RAID
Super Computing By RIsaj t r S3 ece, roll 50.
Computer Architecture
NCSA Supercluster Administration
Overview of HPC systems and software available within
with Computational Scientists
آشنايي با نرم افزار.
نرم افزار عملي دوره كارداني كامپيوتر دانشگاه کردستان دانشكده فني
آزمايشگاه مهندسي نرم افزار
The C&C Center Three Major Missions: In This Presentation:
Cluster Computers.
Presentation transcript:

Workshop on Parallel Computing Institute for Studies in Theoretical Physics and Mathematics School of Math 14 July 2004 کارگاه آموزشي محاسبات موازي پژوهشگاه دانشهاي بنيادي پژوهشکده رياضيات ٢٤ تيرماه ١٣٨٣

تعاريف و اهداف نقش محاسبات موازي در تحقيقات و صنعت معرفي چند شبکه محاسباتي فعال

Mainframe Vector Supercomputer Mini- computer Work- Station PC PC Cluster تعاريف و اهداف نقش محاسبات موازي در تحقيقات و صنعت معرفي چند شبکه محاسباتي فعال

آشنائي با سيستم عامل Linux الگوريتمهاي موازي MPI ابزاري براي برنامه نويسي الگوريتمهاي موازي نمونه هاي کاربردي زمان بالاي در اختيار بودن High Availability محاسبات توزيع شده Distributed Computing محاسبات موازي Parallel Computing محاسبات خوشه اي Cluster Computing محاسبات شبکه اي Grid Computing ابر رايانه Supercomputer شبکه محاسباتي خوشه اي Computing Cluster

نقش محاسبات موازي در تحقيقات و صنعت علوم پايه : تنوع زياد مسائل مهندسي و صنعت : محاسبات عددي بر روي حجم بالاي داده ها مهندسي سخت افزار و نرم افزار : تحقيقات در توسعه شيوه هاي پردازش

معرفي چند شبکه محاسباتي فعال Amirkabir University of Technology (Tehran Polytechnic) Cluster name: AkuCluster CPU type: Pentium III CPU no: 32+1 Total mem: 8 GB Total disk: 580 GB Interconnect: Fast Ethernet OS: Linux Application area: Research Integrator: Self-made Maximal performance achieved: 24.8 GFlops Year: 2001

معرفي چند شبکه محاسباتي فعال Iranian Remote Sensing Center (IRSC) Cluster name: Windows AkuCluster CPU type: Pentium IV CPU no: 8+1 Total mem: 4.5 GB Total disk: 716 GB Interconnect: Fast Ethernet + Gigabit Ethernet OS: Windows 2000 Advanced Server Application area: Process on satellite images Integrator: Amirkabir University of Technology (Tehran Polytechnic) Maximal performance achieved: 20.8 GFlops Year: 2002

معرفي چند شبکه محاسباتي فعال Center of Excellence in Energy Conversion, Sharif University Cluster name: ARASH CPU type: a) Athelon 900 MHz, b) Athelon 1100 MHz CPU no: 24 ( 8a + 16b ) Total disk: 40 GB Interconnect: Ethernet 10/100 ( 16 ports switch x 2 ) OS: Linux Application area: Computational Fluid Dynamics Integrator: Self-made Year: 2001

معرفي چند شبکه محاسباتي فعال Climatological research institute Cluster name: CRICluster CPU type: Pentium IV 1.4 GHz CPU no: 16 Total mem: 8 GB Total disk: 700 GB Interconnect: Fast Ethernet OS: Linux Application area: Numerical Weather Predication Integrator: Cluster Research Lab (self-made) Maximal performance achieved: 20 GFlops Year: 1382

معرفي چند شبکه محاسباتي فعال Institute for Advanced Studies in Basic Science Cluster name: HPCLAB CPU type: a) P4 1.6 GHz, b) P4 3.0 GHz CPU no: 32 (16a +16b) Total mem: 16 GB Total disk: 40 GB Interconnect: Fast Ethernet OS: Linux Application area: Numerical Simulation for Condense Matter Research Integrator: Self-made Year: 2002, 2004

معرفي چند شبکه محاسباتي فعال Scientific Computing Center, School of Math, IPM Cluster name: IPM HPC CPU type: Pentium IV CPU no: 16 Total mem: 16 GB Total disk: 960 GB Interconnect: Fast Ethernet OS: Linux Cluster Manager: OpenPBS Communication Software: MPI Application area: Computer Assisted Proofs, Experimental Mathematics Integrator: Self-made Maximal performance achieved: 34 GFlops Year: 2004