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首页> 外文期刊>International journal of antennas and propagation >Embedding Approach to Modeling Electromagnetic Fields in a Complex Two-Dimensional Environment
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Embedding Approach to Modeling Electromagnetic Fields in a Complex Two-Dimensional Environment

机译:复杂二维环境中电磁场建模的嵌入方法

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An approach is presented to combine the response of a two-dimensionally inhomogeneous dielectric object in a homogeneous environment with that of an empty inhomogeneous environment. This allows an efficient computation of the scattering behavior of the dielectric cylinder with the aid of the CGFFT method and a dedicated extrapolation procedure. Since a circular observation contour is adopted, an angular spectral representation can be employed for the embedding. Implementation details are discussed for the case of a closed 434 MHz microwave scanner, and the accuracy and efficiency of all steps in the numerical procedure are investigated. Guidelines are proposed for choosing computational parameters such as truncation limits and tolerances. We show that the embedding approach does not increase the CPU time with respect to the forward problem solution in a homogeneous environment, if only the fields on the observation contour are computed, and that it leads to a relatively small increase when the fields on the mesh are computed as well.
机译:提出了一种方法,可以将均匀环境中的二维不均匀介电物体的响应与空的不均匀环境的响应相结合。这可以借助CGFFT方法和专用的外推程序高效地计算介电圆柱体的散射行为。由于采用了圆形观察轮廓,因此可以将角光谱表示用于嵌入。讨论了封闭434 MHz微波扫描仪情况下的实现细节,并研究了数值程序中所有步骤的准确性和效率。提出了用于选择诸如截断极限和公差之类的计算参数的准则。我们表明,如果仅计算观察轮廓上的字段,则嵌入方法不会在同构环境中增加正向问题解决方案的CPU时间,并且当网格上的字段出现时,嵌入方法会导致相对较小的增加也被计算。

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