Estimation of the Radiated Emission from a Protective Turn of a Meander Line in the Air

Adnan F. Alhaj Hasan, T. Gazizov
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Abstract

This paper investigates an algorithm for estimating the radiated emission from transmission lines using quasi-static analysis. The algorithm was tested on a meander line turn of two coupled wires above the ground plane in the air dielectric filling. The dependences of the cross-section parameters and the characteristics of the turn on the temperature at the frequency of 10 GHz were obtained. Examples of the radiation patterns at different frequencies, as well as the current distributions are given. Frequency dependences of the maximum values of the electric field strength obtained by two approaches: quasi-static and electrodynamic are compared. The results were obtained and compared for the meander line with optimal parameters and for the unmatched meander line and compared with the results of a single matched transmission line of one wire over the ground plane and an unmatched one. It is noted that the results of quasi-static and electrodynamic analyses are close at low frequencies but the difference increases at high ones. It was revealed that the meander line structures are able to minimize the radiated emission in the most frequency range except at the resonance frequencies. The tested algorithm gave acceptable results comparing to electrodynamic analysis.
空气中弯曲线保护转弯的辐射发射估计
本文研究了一种基于准静态分析的输电线路辐射发射估计算法。该算法在空气介质填充中,对两根耦合导线在地平面以上的弯曲线转弯进行了测试。得到了在10 GHz频率下,截面参数和匝数特性随温度的变化规律。给出了不同频率下的辐射图和电流分布的例子。比较了准静态和电动态两种方法得到的电场强度最大值与频率的关系。对参数最优的曲线和不匹配曲线的结果进行了比较,并与一根导线在地平面上的单一匹配传输线和不匹配传输线的结果进行了比较。准静态分析和电动态分析的结果在低频时接近,在高频时差异增大。结果表明,曲线结构在除谐振频率外的大部分频率范围内都能使辐射发射最小化。与电动力学分析相比,测试算法给出了可接受的结果。
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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