We developed an efficient analysis the current induced in the wire structure. The analysis based on the time-Domain Integral Equation, in which a thin wire approximation is used. The time-domain electric field integra...We developed an efficient analysis the current induced in the wire structure. The analysis based on the time-Domain Integral Equation, in which a thin wire approximation is used. The time-domain electric field integral equation is used with the moment method to develop a numerical procedure for treating problems of scattering by arbitrary shaped bodies. We present an efficient numerical method for calculating the electromagnetic scattering from arbitrary shaped conducting bodies in the time domain with a comprehensive treatment of a single, straight thin wire. A time domain electric field integral equation is formulated for the problem of an arbitrary shape. The solution method is based on the moment method to solve the straight thin-wire problem.展开更多
提出了采用三次样条函数作为时域基函数求解良导体细线时域积分方程(TD-EFIE)的MOT(Marching on in time)算法,由于三次样条函数是非因果的,算法中采用有限带宽信号的一步外推方法,估计将来值。三次样条函数作为时间基函数,具有插值精...提出了采用三次样条函数作为时域基函数求解良导体细线时域积分方程(TD-EFIE)的MOT(Marching on in time)算法,由于三次样条函数是非因果的,算法中采用有限带宽信号的一步外推方法,估计将来值。三次样条函数作为时间基函数,具有插值精度高、支撑区域小的特点,在保证计算精度的情况下降低了信号采样率和计算的复杂性,提高了MOT算法的后时稳定性。计算结果表明了算法的有效性。展开更多
基金This paper is supported by two projects(2006),Philosophicaland Social Science Project of Guangdong Province (06E18)theEleventh Five-Year-Programming Project of Philosophical andSocial Science Development of Guangzhou(06- Z4-6).
文摘We developed an efficient analysis the current induced in the wire structure. The analysis based on the time-Domain Integral Equation, in which a thin wire approximation is used. The time-domain electric field integral equation is used with the moment method to develop a numerical procedure for treating problems of scattering by arbitrary shaped bodies. We present an efficient numerical method for calculating the electromagnetic scattering from arbitrary shaped conducting bodies in the time domain with a comprehensive treatment of a single, straight thin wire. A time domain electric field integral equation is formulated for the problem of an arbitrary shape. The solution method is based on the moment method to solve the straight thin-wire problem.
文摘提出了采用三次样条函数作为时域基函数求解良导体细线时域积分方程(TD-EFIE)的MOT(Marching on in time)算法,由于三次样条函数是非因果的,算法中采用有限带宽信号的一步外推方法,估计将来值。三次样条函数作为时间基函数,具有插值精度高、支撑区域小的特点,在保证计算精度的情况下降低了信号采样率和计算的复杂性,提高了MOT算法的后时稳定性。计算结果表明了算法的有效性。