A W-band Wideband Circularly Polarized Reconfigurable Microstrip Antenna

Zhongbing Zhou, Minghua Zhao
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Abstract

In this paper, a wide band circularly polarized reconfigurable microstrip antenna is designed by using multivariate method. The antenna works in the W band, four radiation patches are fed coupling through the H-type gap, so that the adjacent patch radiation unit generates a pair of electromagnetic waves with vertical polarization. The 90° bridge is used to make each pair of electromagnetic waves with the same amplitude and 90°phase difference, so as to realize the circular polarization of the antenna. MEMS switch can be connected externally. Selecting the input end of a 90° bridge makes the phase between radiation elements advance or lag 90°, thus achieving reconfigurable left-right circular polarization. Ansoft HFSS simulation shows that the antenna has a central frequency point of 78 GHz, a return loss of less than -10 dB, a bandwidth of 13.9 GHz with a voltage standing wave ratio of less than 2, and a bandwidth of 15 GHz with an axial ratio of less than 3 dB, realizing the circular polarization performance of the antenna.
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一种w波段宽带圆极化可重构微带天线
本文采用多变量方法设计了一种宽带圆极化可重构微带天线。天线工作在W波段,四个辐射贴片通过h型缝隙馈电耦合,使相邻的贴片辐射单元产生一对垂直极化的电磁波。使用90°电桥使每对电磁波具有相同的振幅和90°相位差,从而实现天线的圆极化。MEMS开关可外接。选择90°电桥的输入端,使辐射单元之间的相位提前或滞后90°,从而实现可重构的左右圆极化。Ansoft HFSS仿真结果表明,该天线的中心频率点为78 GHz,回波损耗小于-10 dB,带宽为13.9 GHz,电压驻波比小于2,带宽为15 GHz,轴向比小于3 dB,实现了天线的圆极化性能。
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