Title :
Time Domain Analysis of Electromagnetic Scattering Problems by Using Integral Equation Method With Space-Delayed Temporal Basis Functions
Author :
Zha, L.P. ; Fan, Z.H. ; Ding, D.Z. ; Chen, Ru Shan
Author_Institution :
Dept. of Commun. Eng., Nanjing Univ. of Sci. & Technol., Nanjing, China
Abstract :
This communication presents a new numerical method for the efficient solution of marching on in time (MOT)-based time domain integral equations (TDIE) for electromagnetic scattering from perfect electrically conducting (PEC) object with large smooth surfaces. A set of space-delayed temporal basis functions is proposed for the temporal discretization, and the curvilinear Rao-Wilson-Glisson (CRWG) basis functions for the spatial discretization. The space-delayed temporal basis functions are firstly extended to the time domain electric field integral equations (TDEFIE), then easily to the time domain combined field integral equations (TDCFIE). Numerical results demonstrate that the new method is stable and effective for the transient scattering problems from PEC objects with large smooth surfaces and a single plane wave incidence. A significant reduction of the number of spatial unknowns is achieved by using the space-delayed temporal basis functions.
Keywords :
electromagnetic wave scattering; integral equations; time-domain analysis; curvilinear Rao-Wilson-Glisson basis functions; electromagnetic scattering; perfect electrically conducting object; space-delayed temporal basis functions; spatial discretization; temporal discretization; time domain analysis; time domain combined field integral equations; time domain electric field integral equations; transient scattering; Current density; Integral equations; Magnetic fields; Scattering; Surface waves; Time-domain analysis; Vectors; Scattering problems; space-delayed temporal basis functions; time-domain integral equation;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2014.2336695