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On the Initial Condition Problem of the Time Domain PMCHWT Surface Integral Equation

机译:关于时域PMCHWT表面整体方程的初始条件问题

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Non-physical, linearly increasing and constant current components are induced in marching on-in-time solution of time domain surface integral equations when initial conditions on time derivatives of (unknown) equivalent currents are not enforced properly. This problem can be remedied by solving the time integral of the surface integral for auxiliary currents that are defined to be the time derivatives of the equivalent currents. Then the equivalent currents are obtained by numerically differentiating the auxiliary ones. In this work, this approach is applied to the marching on-in-time solution of the time domain Poggio-Miller-Chan-Harrington-Wu-Tsai surface integral equation enforced on dispersive/plasmonic scatterers. Accuracy of the proposed method is demonstrated by a numerical example.
机译:当(未知)等效电流的时间衍生物的初始条件未正确执行时,在进行时域表面整体方程的停车在内的时域表面整体方程的不良时间分量。 通过求解被定义为等效电流的时间衍生物的辅助电流的表面积分的时间积分来弥补该问题。 然后通过数值地区分辅助辅助来获得等效电流。 在这项工作中,这种方法适用于在分散/等离子体散射体上强制执行的时域Poggio-Miller-Chan-Harrington-Wu-Tsai表面整体整体式整体方程的行进。 通过数值示例对所提出的方法的准确性进行说明。

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