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      Efficient parallelization of the multilevel fast multipole algorithm for the solution of large-scale scattering problems

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      Author(s)
      Ergül, Özgür
      Gürel, Levent
      Date
      2008-08
      Source Title
      IEEE Transactions on Antennas and Propagation
      Print ISSN
      0018-926X
      Electronic ISSN
      1558-2221
      Publisher
      Institute of Electrical and Electronics Engineers
      Volume
      56
      Issue
      8
      Pages
      2335 - 2345
      Language
      English
      Type
      Article
      Item Usage Stats
      252
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      Abstract
      We present fast and accurate solutions of large-scale scattering problems involving three-dimensional closed conductors with arbitrary shapes using the multilevel fast multipole algorithm (MLFMA). With an efficient parallelization of MLFMA, scattering problems that are discretized with tens of millions of unknowns are easily solved on a cluster of computers. We extensively investigate the parallelization of MLFMA, identify the bottlenecks, and provide remedial procedures to improve the efficiency of the implementations. The accuracy of the solutions is demonstrated on a scattering problem involving a sphere of radius 110 discretized with 41 883 638 unknowns, the largest integral-equation problem solved to date. In addition to canonical problems, we also present the solution of real-life problems involving complicated targets with large dimensions
      Keywords
      Electromagnetic scattering
      Fast solvers
      Integral equations
      Multilevel fast multipole algorithm (MLFMA)
      Parallel algorithms
      Permalink
      http://hdl.handle.net/11693/48887
      Published Version (Please cite this version)
      http://doi.org/10.1109/TAP.2008.926757
      Collections
      • Computational Electromagnetics Research Center (BiLCEM) 84
      • Department of Electrical and Electronics Engineering 4011
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