DocumentCode
1426301
Title
Hybrid Discrete Singular Convolution-Method of Moments Analysis of a 2-D Transverse Magnetic Reverberation Chamber
Author
Zhao, Huapeng ; Shen, Zhongxiang
Author_Institution
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Volume
52
Issue
3
fYear
2010
Firstpage
612
Lastpage
619
Abstract
In this paper, a new hybrid technique combining the discrete singular convolution (DSC) method and the method of moments (MoM) is proposed for efficient analysis of a 2-D transverse magnetic reverberation chamber. The metallic stirrer is viewed as a current sheet along whose surface the tangential electric field is forced to zero. The DSC method is used to model the cavity excited by the original source plus the current sheet, which are expressed on the grids of the DSC method using the regularization technique. The MoM is used to enforce the boundary condition along the stirrer. Solutions from the aforementioned two steps are coupled together with the aid of the equivalence principle. The validity and advantage of the proposed hybrid technique is shown through comparisons with results from alternative methods. Taking advantage of the high efficiency of the DSC method, the new hybrid technique is shown to be a lot more efficient than a pure MoM with approximately the same memory cost.
Keywords
convolution; method of moments; reverberation chambers; 2-D transverse magnetic reverberation chamber; hybrid discrete singular convolution-method; metallic stirrer; method of moments analysis; regularization technique; tangential electric field; Antenna measurements; Boundary conditions; Convolution; Costs; Electromagnetic measurements; IEC standards; Magnetic analysis; Magnetic field measurement; Moment methods; Reverberation chamber; Transmitting antennas; Discrete singular convolution (DSC); hybrid technique; method of moments (MoM); regularization technique; reverberation chamber (RC);
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/TEMC.2010.2041005
Filename
5420039
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