DocumentCode :
2806876
Title :
Element-wise Implementation of Iterative Solvers for FEM Problems on the Cell Processor
Author :
Kushida, Noriyuki
Author_Institution :
Center for Comput. Sci. & E-Syst., Japan Atomic Energy Agency, Tokai, Japan
fYear :
2011
fDate :
9-11 Feb. 2011
Firstpage :
401
Lastpage :
408
Abstract :
A new implementation of the finite element method(FEM) that is suitable for the Cell processor. Since the Cell processors have a far greater performance and lower byte per-flop (B/F) rate than traditional scalar processors, the amount of memory transfer was reduced and a technique was used to hide the number of memory accesses. The amount of memory transfer was reduced by accepting additional floating-point operations without storing the data if the data were required repeatedly. In the present study, such memory access reduction was applied to the conjugate gradient (CG)method. In order to achieve memory access reduction in the CG method, element-wise computation was used in order to avoid global coefficient matrices, which cause frequent memory accesses. Moreover, all data transfer times are incorporated into the calculation time. As a result, the new implementation performed 10 times better than a traditional implementation run on a PPU.
Keywords :
conjugate gradient methods; finite element analysis; floating point arithmetic; multiprocessing systems; FEM problems; byte per-flop rate; cell processor; conjugate gradient method; data transfer time; element-wise computation; finite element method; floating-point operations; iterative solvers; memory access reduction; memory transfer; Bandwidth; Equations; Finite element methods; Memory management; Microprocessors; Multicore processing; Chip Multi-processor; Conjugate Gradient Method; Element-wise Implementation; Finite Element Method; PowerXCell 8i;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel, Distributed and Network-Based Processing (PDP), 2011 19th Euromicro International Conference on
Conference_Location :
Ayia Napa
ISSN :
1066-6192
Print_ISBN :
978-1-4244-9682-2
Type :
conf
DOI :
10.1109/PDP.2011.74
Filename :
5739026
Link To Document :
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