DocumentCode
1442077
Title
Parallel MoM Using Higher-Order Basis Functions and PLAPACK In-Core and Out-of-Core Solvers for Challenging EM Simulations
Author
Yu Zhang ; van de Geijn, R.A. ; Taylor, M.C. ; Sarkar, T.K.
Volume
51
Issue
5
fYear
2009
Firstpage
42
Lastpage
60
Abstract
Typically, the problem size that can be solved by the Method of Moments (MoM) is limited by the amount of RAM installed in the computer. To reduce the number of unknowns for MoM, higher-order polynomial functions have been introduced as the basis functions. To extend the capability of the MoM code, this paper presents a new development: the use of a new parallel out-of-core solver called PLAPACK. The PLAPACK library package offers benefits that are not available in the more commonly used ScaLAPACK libraries. Numerical results on a typical computer platform for two different challenging electromagnetic problems show that the PLAPACK out-of-core solver introduced here is a very efficient way to deal with large matrix equations. The implementation of these advancements creates a powerful tool for the efficient computational electromagnetic solution of large and complex real-world problems.
Keywords
computational electromagnetics; method of moments; parallel processing; polynomials; EM simulation; PLAPACK in-core solver; computational electromagnetic; higher-order basis function; method of moments; parallel MoM; parallel out-of-core solver; polynomial function; Computational electromagnetics; Computational modeling; Computer simulation; Concurrent computing; Equations; Libraries; Moment methods; Polynomials; Read-write memory; Surface waves; Computational electromagnetics; Vivaldi antennas; computation time; electrically large objects; in-core solver; moment methods; out-of-core solver; parallel algorithms; parallel architectures; parallel processing; parallel programming; radar cross sections;
fLanguage
English
Journal_Title
Antennas and Propagation Magazine, IEEE
Publisher
ieee
ISSN
1045-9243
Type
jour
DOI
10.1109/MAP.2009.5432038
Filename
5432038
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