首页> 外文会议>2009 3rd IEEE international symposium on microwave, antenna, propagation and EMC technologies for wireless communications : Proceedings >Moment method solution of the EFIE for TE-wave scattering by conducting cylinders using basis and testing functions lacking in sufficient degrees of differentiability
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Moment method solution of the EFIE for TE-wave scattering by conducting cylinders using basis and testing functions lacking in sufficient degrees of differentiability

机译:EFIE用于TE波散射的矩量法解决方案,该方法通过使用缺乏足够微分度的基础和测试函数来传导圆柱体

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The application of the method of moments usually requires a minimum degree of differentiability for basis and testing functions. Through the solution of the electric field integral equation (EFIE) for scattering by a perfect conducting cylinder illuminated by a TE wave, however, it is shown that such a restriction can be loosed. Theoretically, pulse basis functions and point matching are usually considered to be not suitable for the solution of the TE EFIE for lack of sufficient degrees of differentiability. Nevertheless proper treatment still permits their application. The basic idea is to avoid or eliminate all the nonphysical terms in the discretized equations produced by point matching. Several methods to tackle this problem are theoretically investigated and validated through numerical results for cylinders of various geometries.
机译:矩量法的应用通常要求基础和测试功能具有最小程度的可微性。但是,通过电场积分方程(EFIE)的解,可以使TE波照射的理想导电圆柱体产生散射,从而可以放宽这种限制。从理论上讲,由于缺乏足够的微分度,通常认为脉冲基函数和点匹配不适合TE EFIE的解决方案。然而,适当的治疗仍然允许它们的应用。基本思想是避免或消除由点匹配产生的离散方程中的所有非物理项。理论上研究了几种解决该问题的方法,并通过各种几何形状的圆柱体的数值结果进行了验证。

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