DocumentCode
1212484
Title
An Improved Multilevel Green´s Function Interpolation Method With Adaptive Phase Compensation
Author
Li, Long ; Wang, Hao Gang ; Chan, Chi Hou
Author_Institution
Sch. of Electron. Eng., Xidian Univ., Shaanxi
Volume
56
Issue
5
fYear
2008
fDate
5/1/2008 12:00:00 AM
Firstpage
1381
Lastpage
1393
Abstract
An improved multilevel Green´s function interpolation method (MLGFIM) with adaptive phase compensation (APC) is proposed. The difficulty in applying interpolation approaches to the fast varying phase term in the integral equation kernel for full-wave electromagnetic (EM) simulations is eradicated by using the phase compensation and adaptive direction separation (ADS). The multilevel tree structure in MLGFIM keeps the number of direction separation invariant at all levels, attributing to the recursive interpolation with multilevel phase compensation. The proposed MLGFIM-APC in conjunction with the Lagrange-Chebyshev interpolation yield an O(N log N) CPU time and O(N) computer memory requirement for surface scattering problems. By introducing a transition level, the MLGFIM-APC can adaptively incorporate interpolation techniques of conventional interpolation (CI), transition interpolation (TI) and phase-compensation interpolation (PI), corresponding to electromagnetic simulation of problems of small, moderate, and large electrical sizes, respectively. Large-scale microstrip antenna arrays are simulated to illustrate the accuracy and efficiency of the proposed method. It is found that the CPU time scales better than O(N log N) for these co-planar problems.
Keywords
Green´s function methods; electromagnetic waves; iterative methods; Lagrange-Chebyshev interpolation; adaptive direction separation; adaptive phase compensation; computer memory requirement; full-wave electromagnetic simulations; integral equation kernel; multilevel Green function interpolation method; multilevel phase compensation; multilevel tree structure; surface scattering problems; Computational modeling; Electromagnetic scattering; Green´s function methods; Integral equations; Interpolation; Kernel; Lagrangian functions; Microstrip antenna arrays; Microstrip antennas; Tree data structures; Adaptive direction separation; Lagrange-Chebyshev interpolation; adaptive transition; multilevel Green´s function interpolation method with adaptive phase compensation (MLGFIM-APC); phase compensation (PC);
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2008.922611
Filename
4512148
Link To Document