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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Full-wave analysis of cavity-backed and probe-fed microstrip patch arrays by a hybrid mode-matching generalized scattering matrix and finite-element method
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Full-wave analysis of cavity-backed and probe-fed microstrip patch arrays by a hybrid mode-matching generalized scattering matrix and finite-element method

机译:混合模式匹配广义散射矩阵和有限元方法对腔体支撑和探针馈送微带贴片阵列进行全波分析

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摘要

A full-wave method to analyze probe-fed infinite phased arrays of arbitrarily shaped microstrip patches residing in a cavity is proposed. The method is based on a combination of the mode matching and finite-element methods (MM-FEM) and provides a rigorous characterization of the coaxial feed. The radiated field to the half space is expressed as a Floquet's harmonic expansion reducing the analysis to a single elementary cell of the periodic antenna. The unit cell is analyzed as an open-ended succession of homogeneous waveguides of diverse cross sections. Each transition between waveguides is solved by a hybrid MM-FEM procedure to obtain its generalized scattering matrix (GSM). Finally, the GSM of the structure, which characterizes the array, is obtained from the individual GSMs by a cascading process. The method is also extended to the analysis of conventional probe-fed microstrip arrays by using the waveguide simulator model. Several prototypes, implemented and measured in a waveguide simulator, have been analyzed to prove the validity and efficiency of the proposed method.
机译:提出了一种全波分析居住在空腔中的任意形状的微带斑块的探针馈送无限相控阵的方法。该方法基于模式匹配和有限元方法(MM-FEM)的组合,并提供了同轴馈电的严格表征。辐射到半空间的场表示为Floquet的谐波扩展,从而减少了对周期天线的单个基本单元的分析。晶胞被分析为各种截面的同质波导的开放式连续序列。通过混合MM-FEM程序求解波导之间的每个过渡,以获得其广义散射矩阵(GSM)。最后,通过级联过程从各个GSM中获得表征阵列的结构的GSM。通过使用波导模拟器模型,该方法还扩展到常规探针馈送微带阵列的分析。分析了在波导模拟器中实现和测量的几个原型,以证明该方法的有效性和效率。

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