DocumentCode :
41341
Title :
Speedup of Iterative Solver for Electromagnetic Analysis Using Many Integrated Core Architecture
Author :
Ikuno, Soichiro ; Hirokawa, Yuta ; Itoh, Taku
Author_Institution :
Sch. of Comput. Sci., Tokyo Univ. of Technol., Tokyo, Japan
Volume :
51
Issue :
3
fYear :
2015
fDate :
Mar-15
Firstpage :
1
Lastpage :
4
Abstract :
Speedup of Krylov subspace method for the linear system obtained from an electromagnetic analysis using Many Integrated Core (MIC) architecture is investigated. In recent years, MIC architecture appears on the scene of high-performance computing research fields. Since Xeon Phi coprocessor is x86 architecture, the ordinal numerical code can be implemented on the devices without transcribing. In this paper, the linear systems obtained by extended element-free Galerkin method and edge element are solved by mixed precision variable preconditioned (VP) Krylov subspace method, and the methods are implemented on MIC to get high performance. The results of computation show that speedup of VP generalized minimal residual on MIC is three times faster than that of sequential calculation. In addition, the speedup of VP conjugate gradient (CG) is 40.47 times faster than that of sequential CG method.
Keywords :
Galerkin method; electrical engineering computing; electromagnetic field theory; multiprocessing systems; MIC architecture; VP conjugate gradient; VP generalized minimal residual; Xeon Phi coprocessor; edge element; electromagnetic analysis; extended element-free Galerkin method; high-performance computing; iterative solver; linear system; many integrated core architecture; mixed precision variable preconditioned Krylov subspace method; ordinal numerical code; sequential CG method; x86 architecture; Central Processing Unit; Computer architecture; Electromagnetic analysis; Graphics processing units; Linear systems; Microwave integrated circuits; Performance evaluation; Electromagnetic analysis; Many Integrated Core (MIC) architecture; general purpose graphics processing unit (GPGPU); preconditioned conjugate gradient (CG) method;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2353036
Filename :
7093505
Link To Document :
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