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Higher order mode impedances and cut-off frequencies of overmoded coaxial waveguides

机译:过模同轴波导的高阶模式阻抗和截止频率

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摘要

Using both theoretical and experimental methods the critical geometrical ratios for effective higher order mode superposition in coaxial waveguides are identified for SDMA beam forming antenna applications. Higher order mode impedances are also important in the design of such antennas and a closed form expression for the power-voltage definition of impedance is derived together with estimates for the voltage-current and power-current forms. An industry standard finite element solver is used to confirm the accuracy of these formulations for a 60 mm radius overmoded coaxial waveguide. In the second part of the paper, the mode chart is used to design a coaxially fed, overmoded air-spaced coaxial waveguide "T" junction supporting the TEM, TE11 and TE21 modes. A Green's function based model of the input impedance of this junction establishes that the power-voltage characteristic impedance occurs naturally in calculations requiring absolute impedance values. Finally, this input impedance model, which includes higher order and evanescent mode propagation, is demonstrated to agree well with experimental data for this junction.
机译:使用理论和实验方法,为SDMA波束成形天线应用确定了同轴波导中有效高阶模叠加的关键几何比。高阶模式阻抗在这种天线的设计中也很重要,并且阻抗的功率-电压定义的闭合形式表达式与电压-电流和功率-电流形式的估计值一起得出。使用行业标准的有限元求解器来确认半径为60 mm的过模同轴波导的这些公式的准确性。在本文的第二部分中,模式图用于设计同轴馈送,过调制的空间隔同轴波导“ T”结,支持TEM,TE11和TE21模式。基于该结输入阻抗的格林函数模型,可以确定在需要绝对阻抗值的计算中自然会出现电源电压特性阻抗。最后,该输入阻抗模型(包括高阶和渐逝模式传播)被证明与该结的实验数据非常吻合。

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