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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Evaluation of the Green's function for the mixed potential integral equation (MPIE) method in the time domain for layered media
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Evaluation of the Green's function for the mixed potential integral equation (MPIE) method in the time domain for layered media

机译:分层介质时域混合势积分方程(MPIE)方法格林函数的评估

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摘要

In the use of the time-domain integral equation (TDIE) method for the analysis of layered media, it is important to have the time-domain layered medium Green's function computed for many source-to-field distances /spl rho/ and time instants t. In this paper, a numerical method is used that computes the mixed potential Green's functions G/sub v/(/spl rho/,t) and G/sub A/(/spl rho/,t) for a multilayered medium for many /spl rho/'s and t's simultaneously. The method is applicable to multilayered media and for lossless or lossy dispersive media. Salient features of the method are: 1) the use of complex /spl omega/ so that the surface wave poles are lifted off the real k/sub /spl rho// axis such that pole extractions are not required; 2) the use of half-space extraction so that the integrand for the Sommerfeld integral decays exponentially along the k/sub /spl rho// axis to obtain fast convergence of the integral; and 3) the use of the fast Hankel transform so that the Green's function is calculated for many values of /spl rho/ simultaneously. For a four-layer medium, we illustrate the numerical results by a three-dimensional plot of /spl rho/G/sub v/(/spl rho/,t) versus /spl rho/ and t and demonstrate the space-time evolution of these Green's functions. For a maximum frequency range of 8 GHz, the method requires only a few CPU minutes to compute a table of 100 (points in /spl rho/) /spl times/ 168 (points in t) uniformly spaced values of G/sub v/(/spl rho/,t) on an 867-MHz Pentium PC.
机译:在使用时域积分方程(TDIE)方法分析分层介质时,重要的是要针对许多源到场距离/ spl rho /和时刻计算出时域分层介质Green函数t。在本文中,使用一种数值方法来计算多层介质中许多/的混合势格林函数G / sub v /(// spl rho /,t)和G / sub A /(/ spl rho /,t)。同时显示spl rho /和t。该方法适用于多层介质以及无损或有损分散介质。该方法的显着特征是:1)使用复杂的/ spl omega /,以便将表面波极抬离实际的k / sub / spl rho //轴,从而无需提取极点; 2)使用半空间提取,以使Sommerfeld积分的被积数沿k / sub / spl rho //轴呈指数衰减,以获得积分的快速收敛; 3)使用快速汉克尔变换,以便同时为/ spl rho /的许多值计算格林函数。对于四层介质,我们通过/ spl rho / G / sub v /(/ spl rho /,t)与/ spl rho /和t的三维图来说明数值结果,并说明时空演化这些格林的功能。对于8 GHz的最大频率范围,该方法只需要几分钟的CPU时间就可以计算出100个表(/ spl rho /中的点)/ spl次/ 168个(t中的点)均等间隔的G / sub v / (/ spl rho /,t)在867-MHz奔腾PC上。

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