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Analysis of Input Impedance and Mutual Coupling of Microstrip Antennas on Multilayered Circular Cylinders Using Closed-Form Green's Function Representations

机译:闭式格林函数表示法分析多层圆柱体上微带天线的输入阻抗和相互耦合

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摘要

Closed-form Green's function (CFGF) representations for cylindrically stratified media are developed and used in conjunction with a Galerkin method of moments (MoM) in the space domain for the analysis of microstrip antennas on multilayered circular cylinders. An attachment mode is used in the MoM solution procedure to accurately model the feeding of probe-fed microstrip antennas. The developed CFGF representations are modified in the source region (where two current modes can partially or fully overlap with each other during the MoM procedure) so that singularities can be treated analytically and hence, the proposed CFGF representations can be safely used in this region. Furthermore, accurate CFGF representations for the probe-related components (necessary for probe type excitations including the attachment mode) are obtained when the radial distance between the source and field points is electrically small or zero. Numerical results in the form of input impedance of various microstrip antennas and the mutual coupling between two antennas are presented showing good agreement when compared to the available published results as well as the results obtained from CST Microwave Studio.
机译:开发了圆柱形分层介质的闭合形式格林函数(CFGF)表示形式,并将其与空间域的Galerkin矩量法(MoM)结合使用,用于分析多层圆柱体上的微带天线。 MoM解决方案过程中使用了附件模式,以精确地模拟探针馈送的微带天线的馈电。在源区域中修改了开发的CFGF表示形式(在MoM程序中,两个当前模式可以部分或完全重叠),因此可以对奇点进行分析处理,因此,可以在该区域中安全地使用建议的CFGF表示形式。此外,当源点和场点之间的径向距离在电气上较小或为零时,可以获得与探针相关的组件的精确CFGF表示(对于包括连接模式的探针类型的激发是必需的)。与现有公布的结果以及从CST Microwave Studio获得的结果相比,以各种微带天线的输入阻抗和两个天线之间的相互耦合的形式给出的数值结果显示出很好的一致性。

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