Title :
Spectral Two-Step Preconditioning of Multilevel Fast Multipole Algorithm for the Fast Monostatic RCS Calculation
Author :
Rui, Ping-Liang ; Chen, Ru-Shan ; Wang, Dao-Xiang ; Yung, Edward Kai-Ning
Author_Institution :
Nanjing Univ. of Sci. & Technol., Nanjing
Abstract :
A new spectral two-step preconditioning of multilevel fast multipole algorithm (MLFMA) is proposed to solve large dense linear systems with multiple right-hand sides arising in monostatic radar cross section (RCS) calculations. The first system is solved with a deflated generalized minimal residual (GMRES) method and the eigenvector information is generated at the same time. Based on this eigenvector information, a spectral preconditioner is defined and combined with a previously constructed sparse approximate inverse (SAI) preconditioner in a two-step manner, resulting in the proposed spectral two-step preconditioner. Restarted GMRES with the newly constructed spectral two-step preconditioner is considered as the iterative method for solving subsequent systems and the MLFMA is used to speed up the matrix-vector product operations. Numerical experiments indicate that the new preconditioner is very effective with the MLFMA and can reduce both the iteration number and the computational time significantly.
Keywords :
backscatter; eigenvalues and eigenfunctions; electromagnetic wave scattering; radar cross-sections; eigenvector information; fast monostatic RCS calculation; generalized minimal residual; large dense linear systems; matrix-vector product operations; monostatic radar cross section; multilevel fast multipole algorithm; solving subsequent systems; sparse approximate inverse preconditioner; spectral preconditioner; spectral two-step preconditioning; Computational complexity; Computational modeling; Electromagnetic scattering; Integral equations; Iterative methods; Linear systems; MLFMA; Maxwell equations; Radar cross section; Symmetric matrices; Electromagnetic scattering; generalized minimal residual (GMRES) method; multilevel fast multipole algorithm (MLFMA); preconditioning techniques;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2007.901853