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微波无线传能高性能双极化整流天线设计
引用本文:陈强,潘嶙,黄祥.微波无线传能高性能双极化整流天线设计[J].强激光与粒子束,2021,33(3):033003-1-033003-7.
作者姓名:陈强  潘嶙  黄祥
作者单位:1.中国工程物理研究院 电子工程研究所,四川 绵阳 621900
摘    要:设计了一款用于微波无线传能的5.8 GHz高效率双极化整流天线。该整流天线包含5.8 GHz双极化接收天线和5.8 GHz F类整流电路,并通过金属探针实现接收天线和整流电路的集成。接收天线为2×2微带阵列天线,采用了金属环加载技术提升天线的阻抗带宽和鲁棒性。采用金属探针代替常规微波接插件和线缆,实现了接收天线和整流电路的集成,该集成技术不仅简化了整流天线结构,还降低了整流天线的重量、损耗和成本。将双极化整流天线进行了加工和整流效率测试并将其与同样口径面积的线极化整流天线进行比较。实验测试结果表明,在1.47 mW·cm?2的最佳入射功率密度下,该双极化整流天线的最大转换效率达到76.8%。与线极化整流天线相比,当入射波极化方向在0°~90°变化时,双极化整流天线的转换效率始终保持在62%以上,具有稳定的直流输出,表现出良好的全极化接收整流性能。

关 键 词:整流天线    双极化    金属环加载    金属探针集成    转换效率
收稿时间:2020-10-26

Design of high-performance dual-polarized rectenna for microwave wireless power transmission
Institution:1.Institute of Electronic Engineering, CAEP, Mianyang 621900, China2.China Academy of Engineering Physics, Mianyang 621900, China
Abstract:This paper presents a 5.8 GHz high-efficiency dual-polarized rectenna for microwave wireless power transmission. The rectenna consists of a 5.8 GHz dual-polarized receiving antenna and a 5.8 GHz class-F rectifier. A metallic probe is used to integrate the receiving antenna and the rectifier. The receiving antenna is a 2×2 microstrip array antenna and the metal ring loading technology is adopted to improve the rectenna’s impedance bandwidth and robustness. The metal probe instead of the conventional microwave connector and cable is utilized to realize the integration of receiving antenna and rectifier circuit, thus simplifying the structure and reducing the weight, loss and cost of the rectifier antenna. A prototype of the dual-polarized rectenna is fabricated and its rectifying efficiency is measured and compared with the linear-polarized rectenna with the same aperture area. The measured results show that the maximum conversion efficiency of the dual-polarized rectifying antenna reaches 76.8% under the optimum incident power density of 1.47 mW·cm?2. Compared to the linear-polarized rectenna, when the polarization direction of the incident wave varies from 0° to 90°, the conversion efficiency of the rectenna antenna is always above 62% with stable DC output and the rectenna antenna exhibits excellent all-polarization receiving rectification performance.
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