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Adaptive computing on the grid using AppLeS

delete2003-04-01
delete272
PRE
AI
F
Francine Berman
R
Rich Wolski
H
Henri Casanova
H
Holly Dail
M
Marcio Faerman
J
Jennifer M. Schopf
S
Shava Smallen
N
Neil Spring
D
Dmitrii Zagorodnov
DOI:10.1109/TPDS.2003.1195409delete
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Abstract

Abstract

En 中文
Ensembles of distributed, heterogeneous resources, also known as Computational Grids, have emerged as critical platforms for high-performance and resource-intensive applications. Such platforms provide the potential for applications to aggregate enormous bandwidth, computational power, memory, secondary storage, and other resources during a single execution. However, achieving this performance potential in dynamic, heterogeneous environments is challenging. Recent experience with distributed, applications indicates that adaptivity is fundamental to achieving application performance in dynamic grid environments. The AppLeS (Application Level Scheduling) project provides a methodology, application software, and software environments for adaptively scheduling and deploying applications in heterogeneous, multiuser grid environments. In this article, we discuss the AppLeS project and outline our findings.
Keywords:
scheduling
parallel and distributed computing
heterogeneous computing
grid computing
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Journal

IEEE Transactions on Parallel and Distributed Systems cover
IEEE Transactions on Parallel and Distributed Systems
IF:
6
Papers:
5.2K
Citations:
1.1W

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