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Optimization of the boundary conditions and computational parameters for the FDTD solution of the inverse problem of reconstructing permittivity of a dielectric inclusion in a waveguide

机译:FDTD解的边界条件和计算参数的最优化,该FDTD解是重建波导中电介质夹杂物的介电常数的反问题

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Wave propagation in a waveguide of rectangular cross section with perfectly conducting wall containing an inhomogeneous dielectric insert in the form of a parallel-plane diaphragm with an inclusion is simulated numerically. The permittivity of the inclusion is a quantity to be restored from as little information about the scattered field as possible using FDTD numerical solution of Maxwell's equations with nonlocal multimode scattering boundary conditions. The optimal number of higher-order evanescent waves and the size of the computational waveguide domain are found using the series of numerical experiments.
机译:数值模拟了具有完美传导壁的矩形横截面波导中的波传播,该壁包含以平行平面膜片形式包含在内的不均匀介电插入物。使用具有非局部多模散射边界条件的麦克斯韦方程的FDTD数值解,可以从与散射场有关的尽可能少的信息中恢复包含物的介电常数。使用一系列数值实验可以找到最佳的高次van逝波数和计算波导域的大小。

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