• DocumentCode
    3606860
  • Title

    Learning-Based Fast Iterative Convergence of 3-D MoM via Eigen-AGMRES Method

  • Author

    Chatterjee, Gourav ; Das, Arkaprovo ; Gope, Dipanjan

  • Author_Institution
    Dept. of Electr. Commun. Eng., Indian Inst. of Sci., Bangalore, India
  • Volume
    63
  • Issue
    12
  • fYear
    2015
  • Firstpage
    5889
  • Lastpage
    5893
  • Abstract
    Three-dimensional (3-D) full-wave electromagnetic simulation using method of moments (MoM) under the framework of fast solver algorithms like fast multipole method (FMM) is often bottlenecked by the speed of convergence of the Krylov-subspace-based iterative process. This is primarily because the electric field integral equation (EFIE) matrix, even with cutting-edge preconditioning techniques, often exhibits bad spectral properties arising from frequency or geometry-based ill-conditioning, which render iterative solvers slow to converge or stagnate occasionally. In this communication, a novel technique to expedite the convergence of MoM matrix solution at a specific frequency is proposed, by extracting and applying Eigen-vectors from a previously solved neighboring frequency in an augmented generalized minimum residual (AGMRES) iterative framework. This technique can be applied in unison with any preconditioner. Numerical results demonstrate up to 40% speed-up in convergence using the proposed Eigen-AGMRES method.
  • Keywords
    eigenvalues and eigenfunctions; electric field integral equations; iterative methods; learning (artificial intelligence); matrix algebra; method of moments; vectors; 3D MoM; 3D full-wave electromagnetic simulation; EFIE matrix; FMM; Krylov-subspace-based iterative process; augmented generalized minimum residual; cutting-edge preconditioning technique; eigenAGMRES method; eigenvector; electric field integral equation matrix; fast multipole method; geometry-based ill-conditioning; learning-based fast iterative convergence; method of moment; three-dimensional full-wave electromagnetic simulation; Algorithm design and analysis; Antennas; Convergence; Electric fields; Integral equations; Method of moments; Time-frequency analysis; Augmented Generalized Minimum Residual (AGMRES); Augmented generalized minimum residual (AGMRES); Electric Field Integral Equation; Iterative solver; electric field integral equation (EFIE); iterative solver;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2015.2481478
  • Filename
    7274655