Title :
Convergence improvement for iterative solutions of the electric fields integral equation at very low frequencies
Author :
Jun-Sheng Zhao ; Weng Cho Chew
Author_Institution :
Dept. of Electr. & Comput. Eng., Illinois Univ., Urbana, IL, USA
Abstract :
The matrix equations of the electric field integral equation (EFIE) at very low frequencies based on the loop-tree basis and the loop-star basis are transformed by a connection matrix which is a rearrangement of the basis. The new representation of the matrix equation can be solved by iterative solvers. It converges fast and no low frequency break-down occurs in the numerical computation. A method to perform the multiplication of the inverses of the connection matrix and its transpose with a vector for the tree basis with only O(N) floating-point operations is also developed. This work is incorporated into the low frequency multilevel fast multipole algorithm (LF-MLFMA) to solve large problems all the way from zero frequency to electrodynamic frequencies. The matrix transformation does not increase the computational complexity. The memory requirements and the number of floating-point operations still scale as O(N).
Keywords :
Maxwell equations; computational complexity; conducting bodies; convergence of numerical methods; current density; electric field integral equations; electromagnetic fields; floating point arithmetic; impedance matrix; iterative methods; matrix inversion; matrix multiplication; EFIE; EM simulation; LF-MLFMA; Maxwell´s equations; computational complexity; conducting bodies; convergence improvement; electric field integral equation; electrodynamic frequencies; floating-point operations; impedance matrix; inverse connection matrix multiplication; iterative solutions; iterative solvers; loop-star basis; loop-tree basis; low frequency multilevel fast multipole algorithm; matrix equations; matrix transformation; memory requirements; surface current densities; very low frequencies; Circuit simulation; Computational modeling; Current density; Electromagnetic fields; Electromagnetic scattering; Frequency; Impedance; Integral equations; Large-scale systems; Wires;
Conference_Titel :
Antennas and Propagation Society International Symposium, 1999. IEEE
Conference_Location :
Orlando, FL, USA
Print_ISBN :
0-7803-5639-x
DOI :
10.1109/APS.1999.789326