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Alternative representation of dyadic Green's functions for circular cylindrical cavities with applications to the EMC characterization of space station modules

机译:圆柱腔的二进格林函数的替代表示及其在空间站模块的EMC表征中的应用

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This paper compares two different representations of the dyadic Green's functions for circular cylindrical cavities, also valid at the source point. The representations are obtained by considering the cavity either as a circular waveguide (longitudinal representation) or as a radial waveguide (radial representation), terminated by conducting surfaces. The radial representation of dyadic Green's functions for circular cylindrical cavities is not available in the previous literature and is applied to study the field penetrating a space station module through apertures, including lateral ones, or due either to elementary sources or to wire antennas active in the module. We show that for the typical dimensions of spatial modules the radial representations give rise to more convergent series and therefore are more suitable for the computation of the cavity electromagnetic fields. The problem of obtaining the self and mutual impedances of two wire antennas located in the cavity is also discussed in general, and various results are reported for particular cases. Simplified cavity models can be effectively applied to the electromagnetic compatibility (EMC) characterization of space station modules.
机译:本文比较了圆柱腔上的二进格林函数的两种不同表示形式,这些函数在源点上也有效。通过将空腔视为圆形波导(纵向表示)或径向波导(径向表示)来获得这些表示,并以导电表面终止。在以前的文献中尚无关于圆柱腔的二进格林函数的径向表示,而是用于研究穿过空间孔(包括横向孔)或由于基本源或有源天线激活的天线穿过空间站模块的场。模块。我们表明,对于空间模块的典型尺寸,径向表示法引起了更多的收敛级数,因此更适合于腔电磁场的计算。通常还讨论了获得位于腔中的两个线状天线的自阻抗和互阻抗的问题,并且针对特定情况报道了各种结果。简化的腔体模型可以有效地应用于空间站模块的电磁兼容性(EMC)表征。

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