DocumentCode
1493193
Title
Efficient Current-Based Hybrid Analysis of Wire Antennas Mounted on a Large Realistic Aircraft
Author
Zhao, Wei-Jiang ; Li, Joshua Le-Wei ; Hu, Li
Author_Institution
Dept. of Electr. & Comput. Eng., Nat. Univ. of Singapore, Singapore, Singapore
Volume
58
Issue
8
fYear
2010
Firstpage
2666
Lastpage
2672
Abstract
An efficient hybrid analysis which hybridizes surface-wire integral equations (SWIE) with physical optics (PO) approximation is presented for wire antennas attached to an electrically large aircraft platform. In the analysis, the whole surface of the platform and antennas is divided into three regions, namely, the method of moments (MoM) region, the PO region and a region referred to as the joint PO-MoM (POM) region in this paper. The MoM region, generally, the smallest one among the three regions, includes wires, wire-surface junctions and a small part of the platform surface surrounding the junctions. A large part of the remaining platform surface forms the PO region with the rest being the POM region which is situated between the MoM and PO regions. The POM region is treated as a MoM region on the one hand so that the total MoM region is sufficiently large to well characterize the platform-attached antennas, whereas it is also regarded as a PO region on the other hand so that its interaction with the PO region needs not to be precisely considered so as to drastically reduce computational requirements.
Keywords
aircraft antennas; integral equations; method of moments; physical optics; wire antennas; aircraft platform; current-based hybrid analysis; method of moments region; physical optics approximation; surface-wire integral equations; wire antennas; wire-surface junctions; Aircraft; Electromagnetics; Geometry; Hafnium; Integral equations; Moment methods; Optical surface waves; Physical optics; Ray tracing; Solid modeling; Surface treatment; Wire; Aircraft; antennas; computational electromagnetics; integral equation; physical optics (PO);
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2010.2050450
Filename
5466101
Link To Document