Implementation of coordinate transformations in periodic finite-element method for modeling rough surface scattering problems
Author:
Affiliation:
1. Department of Electrical and Electronics Engineering; Hacettepe University; Beytepe, Ankara Turkey
2. Department of Electrical and Electronics Engineering; Middle East Technical University; Ankara Turkey
Publisher
Wiley
Subject
Electrical and Electronic Engineering,Computer Graphics and Computer-Aided Design,Computer Science Applications
Reference22 articles.
1. Numerical simulation methods for rough surface scattering;Warnick;Waves Random Media,2001
2. Analytical, experimental, and numerical studies of angular memory signatures of waves scattered from one-dimensional rough surfaces;Kuga;IEEE Trans Geosci Remote Sens,1996
3. Emission of rough surfaces calculated by the integral equation method with comparison to three-dimensional moment method simulations;Chen;IEEE Trans Geosci Remote Sens,2003
4. Finite-difference time-domain simulation of scattering from objects in continuous random media;Moss;IEEE Trans Geosci Remote Sens,2002
5. Monte Carlo-based characteristic basis finite element method (MC-CBFEM) for numerical analysis of scattering from objects on/above rough sea surfaces;Ozgun;IEEE Trans Geosci Remote Sens,2012
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