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بنیاد توسعه رایانش سریع و ابری

HPC and Cloud Computing Development Foundation

آشنایی با پروژه های محاسبات توزیع شده

نرم افزار ها و سیستمهای توزیع شده(Distributed Softwares)،  به عنوان زیر ساختی برای محاسبات تورین و سریع (High Performance and Grid Computing) محسوب می شوند. به همین دلیل تعداد زیادی پروژه با همین موضوع در ازمایشگاهها و پژوهشکده های نرم افزار در دنیا در حال اجرا می باشد. کلاسترهای محاسباتی مبتنی بر CPU و GPU به کمک این سیستمها آمده و توان پردازشی بسیار بالایی را برای محاسبات علمی و شبیه سازی های رایانه ای ایجاد می کند.

در ادامه لیستی از پروژه های فعال در این حوزه معرفی می شود.

Active projects

 

Project

Launched

Home

Category

Research focus

TeraFLOPS

ABC@home

2006-11-21[2]

Mathematical Institute ofLeiden University, Kennislink[3][4]

Mathematics

Find triples related to the ABC conjecture, one of the greatest open problems in mathematics[4]

12.333 (Feb 2012)[5]

Asteroids@home

2012-06-20 [6]

Charles University in Prague, Czech

Astrophysics

To significantly enlarge our knowledge of the physical properties of asteroids[7]

135.065 (Jan 2014)[6]

Albert@home

 

University of Wisconsin, MilwaukeeMax Planck Institute[8]

Astrophysics

Testing project for Einstein@home[8]

2.207 (Feb 2012)[9]

Background Pi

     

Computes decimal digits of pi using digit extraction method[10]

 

BURP

2004-06-17[11]

 

Art

Rendering of 3D animations[12]

0.198 (Feb 2012)[13]

CAS@home

2010-01[14]

Chinese Academy of Sciences[3]

Physics,biochemistry, and others

Encourage Chinese scientists to use volunteer computing for their research[14]

1.319 (Feb 2012)[15]

Chess960@home

2006-03-20[16]

Private[3]

Game-playing

Analysis of chess 960[17]

0.012 (Feb 2012)[18]

Climateprediction.net

2003-12-09[19]

Oxford University[3]

Climate study

Analyse ways to improve climate prediction models[20]

34.925 (Feb 2012)[21]

Collatz Conjecture

2009-01-06[22]

Private[3]

Mathematics

Study the Collatz conjecture, an unsolved conjecture in mathematics[23]

623.444 (Feb 2012)[24]

Constellation

 

Students at the University of StuttgartGermany[25]

Aerospace,Engineering[25]

Various aerospace-related science and engineering problems[25]

2.150 (Feb 2012)[26]

Correlizer

 

EpiGenSys Consortium and EraSysBio+, part of the Seventh Framework Programof the European Union[27]

Genetics[28]

The sequential organization of genomes, and its connection to their 3D architectural organization[28]

1.607 (Feb 2012)[29]

Cosmology@home

 

University of Illinois at Urbana-Champaign[30]

Astronomy

Find the most accurate models that best describe the universe[30]

9.119 (Feb 2012)[31]

Distributed Data Mining

2010-02-mid[32][33]

 

Data analysis,machine learning

Research in the various fields of data analysisand machine learning, such as stock market prediction and analysis of medical data[34]

0.968 (Feb 2012)[35]

Distributed.net

1997-01-28[36]

Private[37]

Cryptography,Mathematics

Crack the RC5-72 cipher, find optimal Golomb rulers of length 27[38]

 

DistrRTgen

2008-01-12[41]

Private[3]

Cryptography

Analysis of hash strength for password security by developing rainbow tables[42]

270.150 (Feb 2012)[43]

DNA@home

 

Rensselaer Polytechnic Institute[44]

 

discover what regulates the genes in DNAusing statistical algorithms[44]

0 (Feb 2012)[45]

Docking@home

2006-11-09[46]

University of Delaware[3]

Molecular biology

Simulate the docking of ligands to proteins for pharmaceutical research[47]

16.390 (Feb 2012)[48]

DrugDiscovery@home

 

Private[49]

Drug design

In silico drug design of chemical compoundsfor medicines in the fields of cancer andneurodegenerative diseases.[49]

0 (Feb 2012)[50]

Einstein@home

2005-02-19[51]

University of Wisconsin, MilwaukeeMax Planck Institute[3]

Astrophysics

Search for pulsars using radio signals and gravitational wave data[52]

1,138 (Aug 2013)[53]

Electric Sheep

1999

 

Art

   

Enigma@home

2007-09-09[54]

Private[3]

Cryptography

Decode three unbroken Enigma messages from World War II[55]

7.175 (Feb 2012)[56]

eOn

 

University of Texas at Austin[3]

Chemistry

Calculate the evolution of an atomic-scale system over time, such as a chemical reaction or diffusion[57]

3.526 (Feb 2012)[58]

Evolution@home

     

Uses evolutionary algorithms to optimize theparameters of different kinds of machine learning algorithms[59]

 

Folding@home

2000-10-01[60]

Stanford University[60]

Molecular biology[60]

Understand protein folding, misfolding, and related diseases, with a minor emphasis inprotein structure prediction[61][62][63]

8,588 (Feb 2012)[66]

FreeHAL

2006[67]

Private[3]

Artificial intelligence

Compute essential information for software which seeks to imitate human conversation[67]

14.019 (Feb 2012)[68]

Galaxy Zoo

     

Classifies galaxy types from the Sloan Digital Sky Survey.[citation needed]

 

Gerasim@home

2007-02-10[69]

Russia[69][70]

Mathematics

Research in discrete mathematics and logic control systems[70]

0 (Feb 2012)[71]

Goldbach's Conjecture

     

Tests Goldbach's weak conjecture.[72]

 

Great Internet Mersenne Prime Search (GIMPS)

1996-01-early[73][74]

Private[73][75]

Mathematics

Searches for Mersenne primes of world record size[75]

95.1 (Nov 2012)[75]

Hydrogen@home

     

Searches for the most efficient method ofhydrogen production[77]

 

Ibercivis

 

Spanish universities and research centers[3]

Various Spanish projects

Research in physics, material medicine, and biomedicine[78]

3.022 (Feb 2012)[79]

Ideologias@home

2011-05-19[80]

Complutense University of Madrid, Spain[81]

Society

Uses social networking mathematical models to study the ideological evolution of a group of people over time[81]

0 (Feb 2012)[82]

Leiden Classical

2005-05-12[83]

Leiden University, the Netherlands[3]

Chemistry

General classical mechanics for students or scientists[84]

1.644 (Feb 2012)[85]

LHC@home
Test4Theory Project

2011-08-01 [86]

CERN[87]

Physics[87]

Run virtual simulations of high-energy particle collisions in a computational search for new fundamental particles for the Large Hadron Collider at CERN[87][88]

2.420 (Feb 2012)[89]

LHC@home
Sixtrack Project

2004-01-09[90]

CERN[3]

Physics

Improve the design of the Large Hadron Collider and its detectors[91]

0.281 (Feb 2012)[92]

M4 Project

     

Decrypts Enigma messages from World War II[93]

 

Magnetism@home

2008-06-09[94]

Donetsk Institute for Physics and Technology, Ukraine[95]

Magnetism,nanotechnology

Explores magnetization patterns[95]

0 (Feb 2012)[96]

Malariacontrol.net

2006-12-19[97]

Swiss Tropical Institute[3]

Epidemiology

Simulate the transmission dynamics and health effects of malaria[98]

14.197 (Feb 2012)[99]

Milkyway@home

2007-07-07[100]

Rensselaer Polytechnic Institute[3]

Astronomy

Create a highly accurate three-dimensional model of the Milky Way galaxy using data collected from the Sloan Digital Sky Survey[101]

1,175 (Aug 2013)[102]

MindModeling@home

2007-03-17[103]

University of Dayton Research Institute and Wright State University[104]

Cognitive science[104]

Builds cognitive models of the human mind[104]

0.006 (Feb 2012)[105]

MoneyBee

   

Finance

   

Moo! Wrapper

2011-02-05[106]

Private[106]

Cryptography

Combines BOINC with distributed.net to try to break the RC5 cipher[107]

807.208 (Feb 2012)[108]

MQL5 Cloud Network

     

[109]

 

Muon1 Distributed Particle Accelerator Design

   

Physics

Simulate and design parts of the Neutrino Factory particle accelerator[110][111]

 

Najmanovich Research Group

 

Université de Sherbrooke[112]

Molecular biology[112]

Research in molecular recognition[112]

0.390 (Feb 2012)[113]

Neurona@home

2011-06-14[114]

Complutense University of Madrid, Spain[115]

Neural network

Simulating the behavior of a large and complex network of cellular automata neurons[115]

0.157 (Feb 2012)[116]

NFS@home

2009-09-05[117]

California State University Fullerton[3]

Integer factorization

Performs parts of the Number Field Sieve in the factorization of large integers[118]

3.106 (Feb 2012)[119]

NumberFields@home

2011-08-12[120]

Arizona State University's School of Mathematics[121]

Number theory

Search for number fields with special properties to assist with the formulation of mathematical conjectures[121]

3.130 (Feb 2012)[122]

Optima@home

 

Institute for Systems Analysis of Russian Academy of Sciences[123]

Optimization[123]

Solve various large-scale optimization problems, currently finding molecular conformations which have minimal potential energy[123]

0.241 (Feb 2012)[124]

Orbit@home

2008-04-03[125]

Planetary Science Institute[3]

Astronomy

Monitor and study the hazards posed by near-earth asteroids[126]

0 (Feb 2012)[127]

Pirates@home

2004-02-06[128]

Spy Hill Research[128]

Software testing

Test of BOINC, no current scientific computation[129]

0.007 (Feb 2012)[130]

POEM@Home

2007-13-11[131]

University of Karlsruhe, Germany[3]

Molecular biology

Protein structure predictioncellular signaling,protein aggregation, and drug design[132]

107.756 (Feb 2012)[133]

Primaboinca

 

RheinMain University of Applied Sciences[3]

Mathematics

Search for counterexamples to Agrawal's conjecture and Popovych's conjecture, which relate to the identification of prime numbers[134]

5.544 (Feb 2012)[135]

QMC@home

2006-03-03[136]

University of Muenster, Germany[3]

Chemistry

Study the structure and reactivity of molecules using quantum chemistry and Monte Carlo techniques[137]

12.460 (Feb 2012)[138]

Quake Catcher Network

2008-02-03[139]

Stanford University[140][141]

Seismology[140][141]

Uses accelerometers connected to personal computers to detect earthquakes and to perform education about seismology[140][141]

0.141 (Feb 2012)[142]

Radioactive@home

 

Poland[143]

Physics

Real-time radioactivity monitoring, detected by gamma sensors connected to volunteer computers[143]

0.172 (Oct 2013)[144]

RALPH@home

2006-02-15[145]

University of Washington[146]

Software testing

Test project for Rosetta@home[146]

0.040 (Feb 2012)[147]

Renderfarm.fi

2009-summer[148]

Private (Finnish)[149][150]

Art

2D and 3D rendering for animation artists[151]

0.357 (Feb 2012)[152]

RNA World

2009-05-21[153]

Private research group inMarburg, Germany[154]

Molecular biology

Uses bioinformatics software to study RNA structure[154]

4.117 (Feb 2012)[155]

Rosetta@home

2005-10-06[156]

University of Washington[3]

Molecular biology

Protein structure prediction for disease research[157]

58.031 (Feb 2012)[158]

SAT@home

2011-09-29

Russian Academy of Sciences

Cryptanalysis,Mathematics

Various applications related to the boolean satisfiability problem, inversion of specificstream cipher functions[159]

1.453 (Feb 2012)[160]

Second Computing

     

Assesses biopolymer dynamics, and models the behavior of clonal colonies in a prairieecosystem[161]

 

SETI@home

1999-05-17[162][163][164]

University of California, Berkeley[3]

Astrobiology

Search for extraterrestrial life by analyzing specific radio frequencies emanating from space[165]

593.650 (Feb 2012)[166]

SETI@home Beta

 

University of California, Berkeley[167]

Software testing

Test project of SETI@home[167]

1.403 (Feb 2012)[168]

SIMAP

2006-04-26[169]

University of Vienna[3]

Molecular biology

Calculate similarities between proteins[170]

5.891 (Feb 2012)[171]

SLinCA

 

G.V.Kurdyumov Institute for Metal Physics of the National Academy of Sciences of Ukraine[172]

Materials science[172]

Studies scaling laws in cluster aggregation[172]

0.053 (Feb 2012)[173]

Spinhenge@home

2006-05-19[174]

Bielefeld University of Applied Sciences[3]

Nanotechnology

Study nano-magnetic molecules for research into localized tumor chemotherapy and micro-memory[175]

0 (Feb 2012)[176]

Stardust@home

2006-08-01[177]

University of California, BerkeleyNASAThe Planetary Society

Astronomy

Scans/analyzes the collection grid from the NASA Stardust mission to capture particles from the coma of comet Wild 2[178][179]

 

Sudoku@vtaiwan

2011-10-21[180]

National Chiao Tung UniversityTaiwan[3]

Mathematics

Determine whether unique-solution sudokupuzzles with only 16 clues exist[181]

1.926 (Feb 2012)[182]

Superlink@Technion

2007-05-03[183]

Technion – Israel Institute of Technology[3]

Genetic linkage analysis

Uses genetic linkage analysis to help find disease-provoking genes[184]

1.084 (Feb 2012)[185]

theSkyNet

2011-09-13[186]

International Centre for Radio Astronomy Research[187]

Astronomy

Analysis of radio astronomy data from telescopes such as the Australian Square Kilometre Array Pathfinder and The Square Kilometre Array[188][189]

46.1 (Jan 2014)[191][not in citation given]

Twin Prime Search

2006-04-13[192][193]

 

Mathematics

Searches for large twin primes[192][193]

 

µFluids@home

2005-09-19[194]

Purdue University[3]

Physics,Aeronautics

Simulate microfluidics problems and two-phase flows in microgravity[195]

0 (Feb 2012)[196]

Virtual Prairie

2008[197]

University of Houston[3]

Botanical ecosystems

Provide ecological guidelines on the design of prairies with the best potential for water purification[198]

0 (Feb 2012)[199]

Volpex@UH

 

University of Houston[200]

Various

Develop distributed computing methods, run the inCell@home application which focuses on simulating protein functions in cellularenvironments which has implications in drug design[200]

0.002 (Feb 2012)[201]

WEP-M+2 Project

2006-05-12[202]

LondonEnglandUnited Kingdom[203]

Mathematics

Investigates the factorization of Mersenneplustwo prime numbers[203]

0.289 (Feb 2012)[204]

Wieferich@Home

2007-12-29[205]

 

Mathematics

Searches for new Wieferich primes[206]

 

WUProp@home

2010-03-27[210]

Private[211]

Statistics

Collect various statistics about other BOINC projects[212]

1.136 (Feb 2012)[213]

YAFU

   

Software testing,Mathematics

Test BOINC server software, integer factorization[214]

0.333 (Feb 2012)[215]

Yoyo@home

2007-07-19[216]

Private[3]

Mathematics,physics, andevolution

Data structure analysis to help prove a conjecture, elliptic curve factorizationpioncreation in a particle accelerator, evolution research, find the shortest optimal Golomb ruler of length 27[217]

12.998 (Feb 2012)[218]

Project

Launched

Home

Category

Research focus

TeraFLOPS