Limitations of the modified transmission line equations, a comparison with NEC

D. A. Larrabee
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引用次数: 6

Abstract

We utilize both the NEC computer code and the transmission line models to compute the resonant frequencies, amplitudes and Q of the low order resonances (<6) of a transmission line illuminated by an electromagnetic wave. We find that the commonly used assumption that the transmission line equations are valid so long as the wavelength of the electromagnetic wave is much larger than the separation between the wires to be insufficient. In addition we find that unless the line is much longer than the separation between the wires, there can be major disagreements between the transmission line equations and Maxwell's equations. We find that in these cases the transmission line equations give resonant frequencies that are too high, field cable coupling that is too high and resonant Q's that are too high. The paper suggests some simple explanations in terms of re-radiation of energy and the electrical length of the transmission lines.
修正的传输线方程的局限性,与NEC的比较
我们利用NEC计算机代码和传输线模型来计算电磁波照射下传输线低阶共振(<6)的谐振频率、振幅和Q。我们发现,通常认为只要电磁波的波长远远大于导线之间的距离,传输线方程就成立的假设是不充分的。此外,我们发现,除非线路比导线之间的距离长得多,否则传输线方程和麦克斯韦方程之间可能存在重大分歧。我们发现,在这些情况下,传输线方程给出的谐振频率太高,场电缆耦合太高,谐振Q太高。本文从能量的再辐射和输电线路的电长度两方面提出了一些简单的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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