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Metasurface Lens for Ultra-Wideband Planar Antenna

机译:超宽带平面天线的元表面镜头

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In this article, an ultra-wideband metasurface lens is designed and integrated into an antipodal Vivaldi antenna (AVA) to improve its radiation directivity without affecting its efficiency and return loss characteristics. The metasurface lens consists of high permittivity metamaterial unit cells which resonate at frequencies far away from the operation bandwidth of 1-6 GHz. Electric field distributions of the antennas show that the near-field behaves more planar for the metasurface lens loaded AVA, as compared to conventional AVA. Both the original antenna and the newly proposed antenna are simulated, fabricated, and tested. The measurements are found in very good agreement with the simulation results. In the operation bandwidth of 1-6 GHz, the return loss is less than -10 dB for both antennas. As verified by far-field measurements, the metasurface loaded AVA has achieved higher gain in the operation bandwidth. Additionally, the half power beamwidth of the AVA is significantly reduced by the inclusion of the metasurface lens.
机译:在本文中,将超宽带元表面镜头设计并集成到反二维天线(AVA)中,以改善其辐射方向性,而不会影响其效率和回波损耗特性。元表面镜片由高介电常数超材料单元组成,该单元单元电池在远离1-6 GHz的操作带宽远离远离的频率时谐振。与传统的AVA相比,天线的电场分布表明,近场对Metasurface镜头的加载AVA的平面更加平坦。原始天线和新提出的天线都是模拟,制造和测试的。测量结果与模拟结果非常好。在1-6 GHz的操作带宽中,两个天线的返回损耗小于-10 dB。如诸如远场测量的验证,所加载的AVA的MEDasurface在操作带宽中取得了更高的增益。另外,通过包含元表面镜头,AVA的半功率波束宽度显着降低。

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