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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Efficient Analysis, Design, and Filter Applications of EBG Waveguide With Periodic Resonant Loads
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Efficient Analysis, Design, and Filter Applications of EBG Waveguide With Periodic Resonant Loads

机译:具有周期性谐振负载的EBG波导的高效分析,设计和滤波应用

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An efficient analysis and design of an electromagnetic-bandgap (EBG) waveguide with resonant loads is presented. Equivalent-circuit analysis is employed to demonstrate the differences between EBG waveguides with resonant and nonresonant loadings. As a result of the resonance, transmission zeros at finite frequencies emerge. The concept is demonstrated in E-plane waveguides. A generic fast and efficient formulation is presented, which starts from the generalized scattering matrix of the unit cell and derives the dispersion properties of the infinite structure. Both real and imaginary parts of the propagation constant are derived and discussed. The Floquet wavelength and impedance are also presented. The theoretical results are validated by comparison with simulations of a finite structure and experimental results. The application of the proposed EBG waveguide in the suppression of the spurious passband of a conventional E-plane filter is presented by experiment
机译:提出了一种具有谐振负载的电磁带隙(EBG)波导的有效分析和设计。等效电路分析用于证明具有谐振和非谐振负载的EBG波导之间的差异。作为共振的结果,出现了有限频率处的传输零。该概念在E平面波导中得到了证明。提出了一种通用的快速有效的公式,该公式从单位晶格的广义散射矩阵开始,得出无限结构的色散特性。导出并讨论了传播常数的实部和虚部。还显示了浮球的波长和阻抗。通过与有限结构模拟和实验结果进行比较,验证了理论结果。通过实验介绍了所提出的EBG波导在抑制常规E平面滤波器的杂散带中的应用。

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