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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >TM Scattering by Perfectly Conducting Polygonal Cross-Section Cylinders: A New Surface Current Density Expansion Retaining up to the Second-Order Edge Behavior
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TM Scattering by Perfectly Conducting Polygonal Cross-Section Cylinders: A New Surface Current Density Expansion Retaining up to the Second-Order Edge Behavior

机译:通过完美地传导多边形横截面圆柱体进行的TM散射:一种新的表面电流密度扩展,可保留至二阶边缘行为

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摘要

In the analysis of scattering by perfectly conducting cylinders with polygonal cross-section by means of surface integral operator formulations, fast convergence can be achieved by expanding the surface current density on each side with basis functions factorizing the correct behavior of the fields on the wedges. Usually, the factorized edge behavior is chosen to be coincident with the first order behavior prescribed by Meixner's theory. However, it could not be the correct one and, consequently, the convergence of the method becomes increasingly slow as the theoretical behavior differs from the real one. This phenomenon is particularly notable when one or more of the predicted singularities unexpectedly disappear. To overcome this problem, in this work the analysis of TM scattering is made by introducing a new expansion devised so that only the first two terms are responsible for the reconstruction of the singularities while the remaining part of the expansion factorizes the second order edge behavior. Actually, the proposed expansion outperforms the one introduced by the authors in a previous work factorizing the first order edge behavior even when this is the correct one.
机译:在通过表面积分算子公式分析具有理想横截面的多边形圆柱体的散射时,可以通过扩展基体上正确的场效应的基本函数来扩展两侧的表面电流密度,从而实现快速收敛。通常,将因式分解的边缘行为选择为与Meixner理论规定的一阶行为一致。但是,它可能不是正确的方法,因此,由于理论行为与实际方法不同,该方法的收敛变得越来越慢。当一个或多个预测的奇点意外消失时,此现象尤其明显。为了克服这个问题,在这项工作中,通过引入一种新的展开来进行TM散射的分析,以便仅前两个项负责奇异点的重构,而展开的其余部分将二阶边缘行为分解。实际上,拟议的扩展优于作者在先前的工作中将一阶边缘行为分解为因子的扩展,即使这是正确的。

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