Title :
Backscatter RCS for TE and TM excitations of dielectric-filled cavity-backed apertures in two-dimensional bodies
Author :
Goggans, Paul M. ; Shumpert, Thomas H.
Author_Institution :
Dept. of Electr. Eng., Mississippi Univ., MS, USA
fDate :
8/1/1991 12:00:00 AM
Abstract :
Transverse electric (TE) and transverse magnetic (TM) scattering from dielectric-filled, cavity-backed apertures in two-dimensional bodies are treated using the method of moments technique to solve a set of combined-field integral equations for the equivalent induced electric and magnetic currents on the exterior of the scattering body and on the associated aperture. Results are presented for the backscatter radar cross section (RCS) versus the electrical size of the scatterer for two different dielectric-filled cavity-backed geometries. The first geometry is a circular cylinder of infinite length which has an infinite length slot aperture along one side. The cavity inside the cylinder is dielectric filled and is also of circular cross section. The two cylinders (external and internal) are of different radii and their respective longitudinal axes are parallel but not collocated. The second is a square cylinder of infinite length which has an infinite length slot aperture along one side. The cavity inside the square cylinder is dielectric-filled and is also of square cross section
Keywords :
backscatter; electromagnetic wave scattering; radar cross-sections; RCS; TE excitation; TM excitations; backscatter radar cross section; circular cylinder; combined-field integral equations; dielectric-filled cavity-backed apertures; infinite length slot aperture; method of moments; square cylinder; transverse electric scattering; transverse magnetic scattering; two-dimensional bodies; Apertures; Backscatter; Dielectrics; Geometry; Integral equations; Moment methods; Radar cross section; Radar scattering; Resonance; Tellurium;
Journal_Title :
Antennas and Propagation, IEEE Transactions on