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Modeling Microwave Power Structures Based on K-furcated Waveguides Arbitrarily Filled with Materials by Modal Techniques

机译:基于模态技术的任意填充材料的K型波导对微波功率结构的建模

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Waveguide structures are very popular in the microwave power industry due to their power handling capabilities. Modal expansion of the waveguide fields and application of the circuit theory allow for the division of a complex device into several simpler sections which can be analyzed separately with the best suited method. The modal techniques can be divided into two groups - those which analyze junctions or discontinuities and those which examine propagation characteristics. In this paper, a review of modal techniques for high power applications is given. Modal expansion of the fields in the waveguides is then performed and applied to modeling of k-furcated waveguides. The modal analysis based on the Coupled Mode Method is described for the waveguides partially filled with isotropic materials. A hybrid modal analysis coupled with Finite Element Method suitable for more complex waveguide structures is also described. Computational results obtained for some real-life microwave devices are presented. Excellent agreement was found when comparing the results with those generated with a commercial FDTD simulator demonstrates the validity and reliability of the proposed method.
机译:波导结构由于其功率处理能力而在微波功率行业中非常受欢迎。波导场的模态扩展和电路理论的应用允许将复杂的设备划分为几个更简单的部分,可以使用最适合的方法分别对其进行分析。模态技术可以分为两组-分析结点或不连续性的组和检查传播特性的组。本文对高功率应用的模态技术进行了综述。然后执行波导中场的模态扩展,并将其应用于k分支波导的建模。描述了基于耦合模式方法的模态分析,用于部分填充各向同性材料的波导。还描述了适用于更复杂的波导结构的结合有限元方法的混合模态分析。介绍了一些现实生活中的微波设备获得的计算结果。将结果与使用商用FDTD模拟器生成的结果进行比较时,发现极好的一致性,证明了所提出方法的有效性和可靠性。

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