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Analysis and Design of Sub-Wavelength Resonant Cavity Type 2-D Leaky-Wave Antennas

机译:亚波长谐振腔型二维漏波天线的分析与设计

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摘要

A rigorous analysis is presented together with novel designs of high-gain sub-wavelength resonant cavity antennas. The antennas under investigation are formed by partially reflective surfaces placed in close proximity over artificial periodic metamaterial ground planes with specific reflection phase responses. A full-wave periodic leaky-wave analysis is applied to this class of antennas for the first time and the results are reported and discussed. Finite-size antenna designs are studied at wireless LAN frequencies (3.7 GHz) using 3-D full-wave software and the results are compared to the predictions of the leaky-wave analysis. Furthermore, the field distribution and the effect of losses are investigated. Finally, practical designs of sub-wavelength 2-D leaky-wave antennas with high-gain performance are presented.
机译:提出了严格的分析,并提出了高增益亚波长谐振腔天线的新颖设计。所研究的天线是由部分反射表面形成的,该部分反射表面紧邻具有特定反射相位响应的人工周期性超材料接地平面。首次将全波周期性泄漏波分析应用于此类天线,并报告和讨论了结果。使用3-D全波软件在无线LAN频率(3.7 GHz)上研究了有限尺寸的天线设计,并将结果与​​泄漏波分析的预测进行了比较。此外,研究了场分布和损耗影响。最后,提出了具有高增益性能的亚波长二维漏波天线的实用设计。

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