Real excitation modeling in a loaded cylindrical metallic cavity using 3-D TLM method

B. Milovanovic, N. Dončov, J. Joković
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引用次数: 1

Abstract

The example of a cylindrical metallic cavity with a rectangular cross section loaded with a dielectric slab placed on the bottom of the cavity, real excitation modeling, using the transmission-line modeling (TLM) wire node, is presented. We use a small wire conductor, as an excitation form, according to the wanted type of mode in the cavity. Also, a small wire conductor as a receiving probe is modeled. Water at a temperature of 20/spl deg/, is used as a dielectric layer. Its relative dielectric constant is calculated from Debby's formula. The modeling process is described and the numerical results obtained are compared with the results calculated by using the theoretical approach based on the transverse resonance (TR) method, and the experimental results and the appropriate conclusions are given.
基于三维TLM方法的圆柱形金属腔实激励建模
本文以具有矩形截面的圆柱形金属腔为例,利用传输在线建模(TLM)线节点进行了实激励建模。我们使用一个小导线,作为激励形式,根据所需的模式型腔。此外,还对作为接收探头的小导线进行了建模。温度为20/spl℃的水用作介电层。它的相对介电常数由黛比公式计算得到。描述了建模过程,并将数值计算结果与基于横向共振(TR)方法的理论方法计算结果进行了比较,给出了实验结果和相应的结论。
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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