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A Systematic Transmission Line Model for the Analysis of Self-Resonant Structures Within Multi-Layer Dielectric Media

机译:多层介电介质中自谐振结构分析的系统传输线模型

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摘要

This paper introduces a transmission line model analysis for dielectric-loaded self-resonant structures (SRSs). Equivalent circuit models, besides their fast computational time, usually offer some insights into the underlying physics of the electromagnetic structures, hence simplifying and improving the design and optimization criteria of these structures. A systematic approach for deriving impedance expressions of SRS on and within multi-layer dielectric media is presented. The process of extracting equivalent circuit parameters from impedance expressions is explained. The trends of equivalent circuit parameters are studied with different dielectric medium properties and various angles of incidence for an SRS with multiple resonant states highlighting the effect of changing the physical and electrical dimensions on the equivalent circuit parameters. The transmission line model responses are compared to full-wave simulation results, and model accuracy is assessed using the mean absolute error criteria. Furthermore, a new simplified method for calculating the forward transmission coefficient of an SRS within multi-layer media is proposed. This expression offers fundamental insights into the factors contributing to the $S_{21}$ response. Finally, experimental measurements for SRS embedded in a multi-layer dielectric media inside a waveguide is conducted and compared to the equivalent model with very good agreement.
机译:本文介绍了介质加载自谐振结构(SRS)的传输线模型分析。等效电路模型除了具有快速的计算时间外,通常还可以洞悉电磁结构的基本物理原理,从而简化和改进这些结构的设计和优化标准。提出了一种系统的方法来推导多层介电介质上和内部的SRS阻抗表达式。说明了从阻抗表达式中提取等效电路参数的过程。研究了具有不同谐振介质的SRS具有不同介电介质特性和不同入射角的等效电路参数的趋势,突出了改变物理和电气尺寸对等效电路参数的影响。将传输线模型的响应与全波仿真结果进行比较,并使用平均绝对误差标准评估模型的准确性。此外,提出了一种新的简化方法,用于计算多层媒体中SRS的前向传输系数。此表达式提供了对有助于$ S_ {21} $响应的因素的基本见解。最后,对嵌入在波导内部多层介电介质中的SRS进行了实验测量,并将其与等效模型进行了比较,具有很好的一致性。

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