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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Electromagnetic transmission through inhomogeneously filled slots in a thick conducting plane-arbitrary incidence
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Electromagnetic transmission through inhomogeneously filled slots in a thick conducting plane-arbitrary incidence

机译:电磁传输通过厚导电平面任意入射中的不均匀填充的缝隙

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摘要

The penetration of an arbitrarily incident electromagnetic wave through a slot filled with inhomogeneous material in a thick conducting plane is analyzed. The solution is obtained via a combined finite-element method/method of moments algorithm based on the generalized network formulation. The discretization of the generalized network formulation is performed via the method of moments. The finite-element method is then used to compute the fields within the inhomogeneous interior cavity region, leading to the construction of the interior aperture admittance matrix. It is shown that with the use of entire domain basis functions, the construction of the aperture admittance matrices is computationally efficient. Furthermore, this method is attractive since it preserves the sparsity of the finite-element method matrix, reducing computational memory requirements. Some examples of the penetration of inhomogeneously filled slots of various cross sections are presented.
机译:分析了任意入射的电磁波在较厚的导电平面中穿过充满不均匀材料的缝隙的穿透情况。通过基于广义网络公式的有限元方法/矩量法组合算法获得解。广义网络公式的离散化是通过矩量法进行的。然后使用有限元方法来计算非均匀内部空腔区域内的场,从而构造内部孔径导纳矩阵。结果表明,使用整个域基函数,孔径导纳矩阵的构造在计算上是有效的。此外,此方法具有吸引力,因为它保留了有限元方法矩阵的稀疏性,从而减少了计算内存需求。给出了各种横截面的不均匀填充的缝隙的渗透的一些示例。

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