DocumentCode :
402294
Title :
A hybridization technique for MLFMM for a large class of cavity backed aperture scattering problems
Author :
Enneking, Arthur ; Ritter, Jan ; Bunger, Rainer
Author_Institution :
A. Enneking, Microwave Software Dev., Bremen, Germany
Volume :
1
fYear :
2003
fDate :
7-9 Oct. 2003
Firstpage :
335
Abstract :
An efficient technique for the analysis of electromagnetic problems involving large metallic bodies with arbitrary complex interior and a number of apertures is presented. Typical applications for this technique are the computation of EMC related transfer-functions of the electromagnetic field, describing the coupling of energy into complex systems as well as the computation of the RCS of complex cavities in large metallic scatterers. The proposed method is based on the combination of generalized admittance matrices (GAMs) for the apertures with MLFMM for the outer problem. The GAMs are first computed by the most appropriate technique for the complex interior problem (e.g. FDTD). In the second step of this technique, the admittance matrices are incorporated into the MLFMM-accelerated iterative MoM solution process. This technique is especially suited for coupling studies of complex systems requiring many different field incident angles, since the GAMs are to be computed only once.
Keywords :
Green´s function methods; computational electromagnetics; conducting bodies; electric admittance; electric field integral equations; electromagnetic wave scattering; finite difference time-domain analysis; iterative methods; magnetic field integral equations; method of moments; radar cross-sections; transfer function matrices; EFIE solution; EMC related transfer-functions; FDTD; MFIE; RCS computation; arbitrary complex interior; cavity backed aperture scattering; electromagnetic problems; free space Green´s function; generalized admittance matrices; hybridization technique; iterative MoM process; large metallic bodies; multilevel fast-multipole algorithm; three-dimensional conducting body; Admittance; Apertures; Current density; Electromagnetic scattering; Integral equations; Magnetic analysis; Magnetic fields; Military aircraft; Military computing; Programming;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference, 2003. 33rd European
Print_ISBN :
1-58053-834-7
Type :
conf
DOI :
10.1109/EUMC.2003.1262287
Filename :
1262287
Link To Document :
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