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Steering the Beam of Medium-to-High Gain Antennas Using Near-Field Phase Transformation

机译:使用近场相位变换控制中高增益天线的波束

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A method to steer the beam of aperture-type antennas is presented in this paper. Beam steering is achieved by transforming phase of the antenna near field using a pair of totally passive metasurfaces, which are located just above and parallel to the antenna. They are rotated independently or synchronously around the antenna axis. A prototype, with a peak gain of 19.4 dBi, demonstrated experimentally that the beam of a resonant cavity antenna can be steered to any direction within a large conical region (with an apex angle of 102°), with less than 3-dB gain variation, by simply turning the two metasurfaces without moving the antenna at all. Measured gain variation within a 92° cone is only 1.9 dBi. Contrary to conventional mechanical steering methods, such as moving reflector antennas with multiaxis rotary joints, the 3-D volume occupied by this antenna system does not change during beam steering. This advantage, together with its low profile, makes it a strong contender for space-limited applications where beam steering with active devices is not desirable due to cost, nonlinear distortion, limited power handling, sensitivity to temperature variations, radio frequency losses, or associated heating. This beam steering method using near-field phase transformation can also be applied to other aperture-type antennas and arrays with medium-to-high gains.
机译:本文提出了一种控制孔径型天线波束的方法。通过使用一对完全无源的超颖表面来变换天线近场的相位来实现波束控制,这两个无源超颖表面位于天线的上方并与之平行。它们绕天线轴独立或同步旋转。峰值增益为19.4 dBi的原型通过实验证明,谐振腔天线的波束可以在大圆锥形区域(顶角为102°)内转向任何方向,增益变化小于3 dB。 ,只需简单地转动两个超颖表面而根本不移动天线。在92°锥体内测得的增益变化仅为1.9 dBi。与传统的机械转向方法(例如带多轴旋转接头的移动反射器天线)相反,此天线系统占用的3-D体积在波束转向期间不会改变。这种优势以及其低矮的外形使其成为空间受限应用的有力竞争者,在这些应用中,由于成本,非线性失真,有限的功率处理,对温度变化的敏感性,射频损耗或相关因素,不希望使用有源器件进行光束转向加热。这种使用近场相位变换的波束控制方法也可以应用于其他具有中高增益的孔径型天线和阵列。

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