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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Multipole-Based Cable Braid Electromagnetic Penetration Model: Electric Penetration Case
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Multipole-Based Cable Braid Electromagnetic Penetration Model: Electric Penetration Case

机译:基于多极电缆编织层的电磁渗透模型:电渗透情况

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摘要

We investigate the electric penetration case of the first principles multipole-based cable braid electromagnetic penetration model reported in the Progress in Electromagnetics Research B 66, 63-89 (2016). We first analyze the case of a 1-D array of wires: this is a problem which is interesting on its own, and we report its modeling based on a multipole-conformal mapping expansion and extension by means of Laplace solutions in bipolar coordinates. We then compare the elastance (inverse of capacitance) results from our first principles cable braid electromagnetic penetration model to that obtained using the multipole-conformal mapping bipolar solution. These results are found in a good agreement up to a radius to half spacing ratio of 0.6, demonstrating a robustness needed for many commercial cables. We then analyze realistic cable implementations without dielectrics and compare the results from our first principles braid electromagnetic penetration model to the semiempirical results reported by Kley in the IEEE Transactions on Electromagnetic Compatibility 35, 1-9 (1993). Although we find results on the same order of magnitude of Kley's results, the full dependence on the actual cable geometry is accounted for only in our proposed multipole model which, in addition, enables us to treat perturbations from those commercial cables measured.
机译:我们调查了《电磁学进展》 B 66,63-89(2016)中报告的第一原理多极电缆编织电磁渗透模型的电渗透情况。我们首先分析一维线阵列的情况:这是一个很有趣的问题,我们通过双极坐标系中的拉普拉斯解法,基于多极适形映射扩展和扩展来报告其建模。然后,我们将我们的第一个原理电缆编织层电磁渗透模型的弹性(电容的倒数)结果与使用多极适形映射双极解决方案获得的结果进行比较。在半径与半间距之比高达0.6的情况下,可以很好地发现这些结果,证明了许多商用电缆所需的坚固性。然后,我们分析了没有电介质的实际电缆实现方式,并将我们的第一个原理编织电磁渗透模型的结果与Kley在IEEE Transactions on Electromagnetic Compatibility 35,1-9(1993)中报告的半经验结果进行了比较。尽管我们发现的结果与Kley的结果处于相同的数量级,但仅在我们提出的多极模型中才完全考虑了对实际电缆几何形状的完全依赖,此外,该模型还使我们能够处理所测量的商用电缆的扰动。

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