Resonant frequency computation of dielectric material loaded circular waveguide using cylindrical coordinate system-based FDTD method

A. D. Setiawan, H. Nusantara, A. Munir
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引用次数: 6

Abstract

In this paper, a cylindrical coordinate system-based finite difference time domain (FDTD) method is proposed for resonant frequency computation of dielectric material loaded circular waveguide. The computation is carried out by discretizing a model of circular waveguide resonator which has the radius of 10.12mm and the length of 60mm using FDTD notation and numerically computed to determine its resonant frequency in transverse electric (TE) mode. Some scenarios are applied for loading the waveguide by dielectric materials to analyze its resonant frequency to be compared with the hollow circular waveguide. From the results, it is shown that the TE mode resonant frequency for loaded circular waveguide is lower than of hollow circular waveguide which satisfies the numerical prediction. Meanwhile, from the scenario of circular waveguide partially loaded with dielectric material which is coated from outer region in a certain depth, it is found that the resonant frequency varies depending on the depth of dielectric material or on the volume proportion of dielectric material in the waveguide. The result shows when the proportion of dielectric material is 36% the lower resonant frequency is similar with the waveguide fully loaded with dielectric material.
基于圆柱坐标系的时域有限差分法计算介质材料加载圆波导谐振频率
提出了一种基于圆柱坐标系的介质材料加载圆波导谐振频率计算的时域有限差分方法。采用时域有限差分法对半径为10.12mm、长度为60mm的圆波导谐振腔模型进行离散化计算,并通过数值计算确定其横向电模式下的谐振频率。在某些情况下,介质材料加载波导,分析其谐振频率,并与空心圆波导进行比较。结果表明,加载圆波导的TE模式谐振频率低于空心圆波导,满足数值预测。同时,对于部分加载介质材料的圆波导,在一定深度外区涂覆介质材料的情况下,发现谐振频率随介质材料的深度或介质材料在波导中的体积比例而变化。结果表明,当介质材料掺量为36%时,谐振腔的下谐振频率与介质材料满载波导相似。
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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