Title :
Full wave analysis of millimeter wave quasi-periodical structure for antenna applications by method of moments and its conjugate gradient solution on GPU/CPU platform
Author :
Zhe Song ; Yan Zhang ; Xing Mu ; Hou-Xing Zhou ; Wei Hong
Author_Institution :
State Key Lab. of Millimeter Waves, Southeast Univ., Nanjing, China
Abstract :
In this paper, an accurate and efficient full wave analysis for millimeter wave quasi-periodical structure for antenna applications is realized. By extracting all the surface wave poles of the spectral domain multilayered Green´s functions, the discrete complex image method (DCIM) can be adopted to fast evaluate their counter parts in spatial domain, and the mixed potential integral equation (MPIE) for method of moments (MoM) can be constructed. With the Jerusalem cross as a patch element on a dielectric layer, a quasi-periodical structure can be organized as the geometries gradually varied. By illuminate this kind of structure with an incident plane wave, the distribution of electric current on the metal surface can be obtained by solving the MoM equation and the forward scattering cross section can be fast calculated by the conjugate gradient (CG) algorithm written in CUDA and realized in NVIDIA graphic process unit (GPU). A layered structure with a 17×17 Jerusalem crosses at 30GHz was calculated and very good agreements have been found between the proposed method and commercial EM simulator (CST), while an improvement on efficiency is realized.
Keywords :
Green´s function methods; conjugate gradient methods; electromagnetic wave scattering; graphics processing units; integral equations; method of moments; millimetre wave antennas; DCIM; GPU-CPU platform; Jerusalem cross; MPIE; MoM; NVIDIA graphic process unit; antenna applications; commercial EM simulator; conjugate gradient solution; dielectric layer; discrete complex image method; forward scattering cross section; frequency 30 GHz; full wave analysis; method of moments; millimeter wave quasiperiodical structure; mixed potential integral equation; multilayered Green´s functions; patch element; spatial domain; spectral domain; surface wave poles; Antennas; Graphics processing units; Integral equations; Mathematical model; Method of moments; Surface waves; Transmission line matrix methods; CUDA; MoM; Quasi-periodical structure; layered structure; multilayered Green´s functions;
Conference_Titel :
Computational Electromagnetics (ICCEM), 2015 IEEE International Conference on
Conference_Location :
Hong Kong
DOI :
10.1109/COMPEM.2015.7052548