盛丽丽,曹卫平,梅立荣,等. 基于数字超表面的低剖面波束控制天线[J]. 电波科学学报,2021,36(6):938-946. DOI: 10.12265/j.cjors.2021123
      引用本文: 盛丽丽,曹卫平,梅立荣,等. 基于数字超表面的低剖面波束控制天线[J]. 电波科学学报,2021,36(6):938-946. DOI: 10.12265/j.cjors.2021123
      SHENG L L, CAO W P, MEI L R, et al. A low profile beam controlling antenna based on digital metasurface[J]. Chinese journal of radio science,2021,36(6):938-946. (in Chinese). DOI: 10.12265/j.cjors.2021123
      Citation: SHENG L L, CAO W P, MEI L R, et al. A low profile beam controlling antenna based on digital metasurface[J]. Chinese journal of radio science,2021,36(6):938-946. (in Chinese). DOI: 10.12265/j.cjors.2021123

      基于数字超表面的低剖面波束控制天线

      A low profile beam controlling antenna based on digital metasurface

      • 摘要: 针对现有透射型超表面剖面高、难以可重构以及波束控制天线体积大的问题,提出一种基于单层数字超表面的波束偏转和宽窄波束切换天线实现方案. 数字超表面由5×7个双方环单元构成,通过在双方环单元中放置一个PIN二极管实现1比特的数字编码. 馈源天线采用具有寄生条带的微带背馈结构,数字超表面置于天线上方0.096λ0的高度,通过控制每一列PIN二极管的偏置电压实现对天线波束的操控. 天线实测结果表明:在中心工作频率3.6 GHz处,波束偏转范围为0°~ ±45°;窄波束时增益8.5 dBi,宽波束时增益6.7 dBi,同时宽波束天线的3 dB波束宽度约为窄波束天线的两倍, 测试结果与仿真结果吻合较好. 该天线具有低剖面多功能特点,可应用在车载通信和机载通信等多个领域.

         

        Abstract: In order to solve the problems of high profile of the transmission metasurface, difficult reconfiguration and large volume of beam controlling antenna, a beam deflection and wide/narrow beam switching antenna based on monolayer digital metasurface is proposed. The digital metasurface is consisted of 5×7 dual ring units, in which a PIN diode is placed to achieve 1 bit of digital encoding. A microstrip back-feed structure with parasitic strips is adopted as the source antenna, and the digital metasurface is placed at a height of 0.096λ0 above the antenna. The beam can be controlled by controlling the biasing voltage of PIN diodes in each column. The measured results of the antenna show that the beam deflection range is 0°− ±45° at the central operating frequency of 3.6 GHz. The gain of the narrow and wide beam antennas is 8.5 dBi and 6.7 dBi, respectively. The 3 dB beam width of the wide beam antenna is about twice that of the narrow beam antenna. The experimental results are in good agreement with the simulation. The antenna has the characteristics of low profile and multi-function which can be used in many fields such as vehicle-mounted communication and airborne communication.

         

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