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Modeling of MEMS enabled reconfigurable frequency selective surfaces in aperture of waveguide antenna array

机译:在波导天线阵列孔径中的MEMS使能的可重构频率选择表面建模

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Influence of the reconfigurable frequency selective surface (FSS) with capacitive microelectromechanical (MEMS) switches on characteristics of matching, radiation and scattering of the antenna array (AA) of the open ends of X-band rectangular waveguides is investigated. It is shown that FSS transmits a radiation field of AA in case of switching on MEMS (return losses less than minus 13 dB in a band of 8-12 GHz). The best matching of AA is provided if the FSS is in close proximity to an aperture. Switching off MEMS weakens amplitude of the wave transmitting through FSS on 36 dB at resonance frequency of 9 GHz without varying the form of the radiation pattern; resonance frequency of AA-FSS system depends on distance between the FSS and the AA aperture. Difference of RCS of back scattering of phased AA on working linear polarization in two states of MEMS-switches is able to more than 10-15 dB.
机译:研究了带有电容微机电(MEMS)开关的可重构频率选择表面(FSS)对X波段矩形波导开口端天线阵列(AA)的匹配,辐射和散射特性的影响。结果表明,在开启MEMS的情况下,FSS会发射AA的辐射场(在8-12 GHz的频带内回波损耗小于负13 dB)。如果FSS非常靠近光圈,则可以提供最佳的AA匹配度。关闭MEMS可以在不改变辐射方向图形式的情况下,以9 dB的共振频率在36 dB上减弱通过FSS传输的波的幅度; AA-FSS系统的共振频率取决于FSS与AA孔径之间的距离。在MEMS开关的两种状态下,相线AA的反向散射相对于工作线性极化的RCS的差异可以超过10-15 dB。

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