Computational and experimental method for measuring the frequency dependence of phase velocities of in-phase and antiphase waves in coupled lines with unbalanced electromagnetic coupling

A. Loschilov, T. T. Trinh, N. Malyutin, G. Malyutin
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Abstract

A computational and experimental method for measuring the frequency dependence of the phase velocities of in-phase and antiphase waves in coupled strip transmission lines is described. The method is based on the experimental determination of the resonant frequencies of a section in which the first strip is current-carrying, is switched on between the input and output, and the second strip connected to the current-carrying strip is under a floating potential. With non-homogeneous dielectric filling, periodically repeated resonances are observed in the section. In parallel with experimental measurements, the frequency characteristics are calculated according to approximately defined primary parameters. At each of the resonant frequencies, the value of the calculated resonant frequency is reduced to the value of an experimentally determined frequency by varying the primary parameters. Then, according to the found primary parameters, the frequency dependences of the phase velocities of in-phase and in-phase waves in a complex form are determined. The method has been successfully applied to connected strip lines in the frequency range up to 8 GHz
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测量非平衡电磁耦合线路中同相波和反相波相速度频率依赖性的计算和实验方法
本文介绍了一种测量耦合带状传输线中同相波和反相波相速度频率依赖性的计算和实验方法。该方法是基于实验确定的部分的谐振频率,其中第一条带载流,在输入和输出之间接通,连接到载流条带的第二条带处于浮动电位下。在非均匀介质填充时,在剖面中观察到周期性重复共振。与实验测量并行,根据近似定义的主要参数计算频率特性。在每个谐振频率处,通过改变主要参数,计算出的谐振频率值被降低为实验确定的频率值。然后,根据得到的主要参数,确定了同相波和同相波的复形式相速度与频率的关系。该方法已成功应用于频率高达8ghz的连接带状线
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