DocumentCode
2771018
Title
New expressions for equivalent edge currents
Author
Weijiang, Zhao ; Shuxi, Gong ; Qizhong, Liu
Author_Institution
Inst. of Antennas & Electromagnetic Scattering, Xidian Univ., Xi´´an, China
fYear
2000
fDate
15-18 Aug. 2000
Firstpage
325
Lastpage
328
Abstract
It is known that the results of the incremental length diffraction coefficients (ILDC) (Mitzner 1974) and the method of equivalent edge currents (MEC) (Michaeli 1984) differ by terms due to the physical optics (PO) current. These PO components become infinite for certain aspects of observation and illumination, by the extraction of the PO contribution from MEC. ILDC, unlike MEC, predicts finite currents for certain directions of observation. However, as already observed by Mitzner, ILDC also displays infinities for certain combinations of observation and incidence directions, though the range of singular aspects is reduced in comparison with MEC. Michaeli (1986) derived a set of expressions for the fringe current components of the equivalent edge currents, those expressions are finite for all aspects of illumination and observation, except for the Ufuntsev singularity. However, for certain non-singular aspects of the ILDC expressions, there is a wide divergence between Michaeli´s (1986) results and Mitzner´s results. In this paper, new expressions are derived for the fringe current components of equivalent edge currents, which are advantageous over those of Mitzner and Michaeli in both accuracy and versatility. A numerical example of the bistatic RCS of a square plate is given.
Keywords
electric current; electromagnetic wave diffraction; electromagnetic wave scattering; physical optics; radar cross-sections; 0.3 GHz; Ufuntsev singularity; bistatic RCS; equivalent edge currents; fringe current components; illumination; incidence direction; incremental length diffraction coefficients; method of equivalent edge currents; observation; physical optics; singular aspects; square plate; Displays; Electromagnetic diffraction; Electromagnetic scattering; H infinity control; Impedance; Lighting; Magnetic fields; Optical diffraction; Physical optics; Surface waves;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas, Propagation and EM Theory, 2000. Proceedings. ISAPE 2000. 5th International Symposium on
Conference_Location
Beijing, China
Print_ISBN
0-7803-6377-9
Type
conf
DOI
10.1109/ISAPE.2000.894790
Filename
894790
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