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Horn Antenna With Reconfigurable Beam-Refraction and Polarization Based on Anisotropic Huygens Metasurface

机译:基于各向异性惠更斯超表面的可重构光束折射和极化的号角天线

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摘要

In this paper, we present a new horn antenna that can mechanically reconfigure the beam direction and polarization by combining a traditional linearly polarized horn antenna with an anisotropic Huygens metasurface. Three layers of Jerusalem-cross structures are integrated in a dielectric substrate to form the anisotropic Huygens metasurface; the entire structure has a thickness of about one fifteenth the working wavelength. By placing the metasurface in front of a traditional linearly polarized horn antenna, the main beam of the horn antenna is steered to a predetermined direction. Furthermore, the direction and polarization of the main beam are reconfigurable by rotating the anisotropic Huygens metasurface. The measured results of the antenna confirm the simulated results. Possible applications of the presented antenna include radar detection, base-station communications, and satellite communications.
机译:在本文中,我们提出了一种新的喇叭天线,该喇叭天线可以通过将传统的线性极化喇叭天线与各向异性的惠更斯超表面相结合而机械地重新配置波束方向和极化。三层耶路撒冷交叉结构集成在介电基片中,形成各向异性的惠更斯形超表面;整个结构的厚度约为工作波长的十五分之一。通过将超颖表面放置在传统的线性极化喇叭天线前面,喇叭天线的主波束将转向预定方向。此外,可以通过旋转各向异性惠更斯超表面来重新配置主光束的方向和偏振。天线的测量结果证实了模拟结果。所提出的天线的可能应用包括雷达检测,基站通信和卫星通信。

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