Title :
Parameterization of the tapered incident wave for numerical simulation of electromagnetic scattering from rough surface
Author :
Hongxia Ye ; Ya-Qiu Jin
Author_Institution :
Key Lab. of Wave Scattering & Remote Sensing Inf., Fudan Univ., China
fDate :
3/1/2005 12:00:00 AM
Abstract :
The tapered wave with the tapering parameter g has been applied to numerical simulation of electromagnetic scattering from randomly rough surface with illuminated finite surface length L. This communication presents how to select the parameters g and L, and shows quantitative relationship with the incident angle. The parameter g, as a function of incident angle, should be large enough to make the wave equation in the range of allowable error. The surface length L, larger than several correlation lengths, should be large enough to suppress the punctuated power at the surface edges and be limited to make efficient computation. Combining these criterions, a graphical format to locate g and L for different incident angle θi is illustrated. An empirical formula for selecting g and L as a function of θi is proposed.
Keywords :
electromagnetic wave scattering; rough surfaces; surface electromagnetic waves; wave equations; electromagnetic scattering; finite surface length; forward-back ward method; graphical format; parameterization; randomly rough surface; rough surface scattering; tapered incident wave; wave equation; Electromagnetic scattering; Numerical simulation; Partial differential equations; Radar scattering; Remote sensing; Rough surfaces; Scattering parameters; Sea surface; Surface roughness; Surface waves; Forward-backward method; numerical simulation; parameterization; rough surface scattering; tapered wave;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2004.842586