首页> 外文会议>2013 IEEE International Conference on Microwave Technology amp; Computational Electromagnetics >TDIE-MOT solvers based on PMCHWT and Muller equations for transient scattering by 2D dielectric objects
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TDIE-MOT solvers based on PMCHWT and Muller equations for transient scattering by 2D dielectric objects

机译:基于PMCHWT和Muller方程的TDIE-MOT求解器,用于二维电介质物体的瞬态散射

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An accurate numerical procedure for analyses of transient scattering by two-dimensional dielectric objects by using the Time Domain Integral Equation (TDIE) method based on PMCHWT equations and Muller equations is developed. The Marching On-in Time (MOT) scheme is employed to solve the integral equations. Quadratic B-spline function is used as the temporal basis functions, and closed-form integrals with respect to time are derived to calculate the matrix elements precisely. Numerical results demonstrate that both the PMCHWT and Muller approaches are accurate and stable for a range of relative permittivity in comparisons with the frequency domain results via discrete Fourier transforms. The Muller approach may be preferred to the PMCHWT scheme for small relative permittivity; however, the PMCHWT approach seems more dependable in general cases.??
机译:利用基于PMCHWT方程和Muller方程的时域积分方程(TDIE),建立了一种精确的数值程序,用于分析二维电介质物体的瞬态散射。采用行进时间(MOT)方案求解积分方程。将二次B样条函数用作时间基础函数,并导出相对于时间的闭合形式积分,以精确地计算矩阵元素。数值结果表明,与通过离散傅立叶变换得到的频域结果相比,PMCHWT和Muller方法对于一定范围的相对介电常数都是准确而稳定的。对于较小的相对介电常数,Muller方法可能优于PMCHWT方案。但是,在一般情况下,PMCHWT方法似乎更可靠。

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