高频传输阻抗

H. Krauthauser, J. Nitsch, S. Tkachenko, N. Korovkin, H.-J. Scheibe
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引用次数: 4

摘要

提出了一种确定同轴电缆传输阻抗的部分新的分析方法。该方法包括两个步骤。第一步(实验)包括确定暴露在外部TEM场中的内部电线和电缆屏蔽层之间的电压。在实验中,所研究的电缆形成一个半圆形回路,其平面与理想导电平面正交。测量是在GTEM细胞中进行的。第二步对电缆的TI进行计算。这些计算是基于电缆屏蔽内电流的解析解。结果表明,采用该方法可以确定典型电缆直径下频率高达10ghz的复杂传输阻抗。此外,与其他方法相比,实验设置相当简单。目前,实验数据的评估被限制在600-700 MHz,大约。这是由于缺乏一个更适当的格林函数来描述GTEM细胞内场中的环路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transfer impedance at high frequencies
A partially new analysis method to determine the transfer impedance (TI) of coaxial cables is proposed. The method involves two steps. The first (experimental) step consists in the determination of the voltage between the interior wire and the cable shield which is exposed to an exterior TEM field. In the experiment the investigated cable forms a semicircular loop, whose plane is orthogonal to an ideally conductive plane. The measurements have been performed in a GTEM cell. In the second step the calculation of the TI of the cable is carried out. These calculations are based on the analytical solutions for the current in the cable shield. It is shown that with the proposed method - in principal - one can determine the complex transfer impedance for frequencies up to 10 GHz for typical cable diameters. Furthermore, the experimental setup is rather simple compared to other methods. At the moment, the evaluation of the experimental data is limited to 600-700 MHz, approximately. This is due to the lack of a more adequate Green's function for the description of the loop in the field inside the GTEM cell.
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