DocumentCode
714994
Title
Investigations of electrical size effects on radar cross section for orthogonally distorted corner reflectors
Author
Unal, Ilhami ; Gulum, Taylan O. ; Bayramoglu, Evren C.
Author_Institution
Millimeter Wave & Terahertz Tech. Res. Lab., TUBITAK-MRC, Kocaeli, Turkey
fYear
2015
fDate
10-15 May 2015
Firstpage
1515
Lastpage
1519
Abstract
In this paper, distorting effects of increasing electrical dimensions of triangular trihedral, circular trihedral and octahedral corner reflectors on radar cross section (RCS) are investigated by simulation and experimental studies. RCS measurements with respect to azimuth angle of a circular octahedral corner reflector have been successfully verified by using different simulation techniques such as Method of Moments (MoM), MLFMM, SBR and transient. Electrically large triangle and octahedral corner reflectors are compared to small ones in terms of wavelength through the simulations, in order to explain dependence of RCS reduction on the size of the reflectors for a given geometrical deviation from orthogonality. It´s been shown that RCS performance with respect to both azimuth angle and frequency of a reflector with electrically large size is extremely sensitive to small deviation angles in orthogonal corners. On the other hand, RCS is less sensitive to small deviations of the orthogonal angles for reflector sizes in excess of a few wavelengths.
Keywords
geometry; method of moments; radar cross-sections; MLFMM; MoM; RCS; SBR; circular octahedral corner reflector; circular trihedral; electrical size effects; method of moments; octahedral corner reflectors; orthogonally distorted corner reflectors; radar cross section; triangular trihedral; Antenna measurements; Azimuth; Computational modeling; Method of moments; Patents; Radar cross-sections; corner reflector; radar cross section; radar decoy;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference (RadarCon), 2015 IEEE
Conference_Location
Arlington, VA
Print_ISBN
978-1-4799-8231-8
Type
conf
DOI
10.1109/RADAR.2015.7131236
Filename
7131236
Link To Document