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Emulating arbitrary antenna arrays with low-profile probe-fed cavity-excited omega-bianisotropic metasurface antennas

机译:用低调探头滤型腔激发ω-Biantropic Metasurface天线模拟任意天线阵列

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We present a methodology to design cavity-excited omega-bianisotropic metasurface (O-BMS) antennas capable of producing arbitrary radiation patterns, prescribed by antenna array theory. The method relies on previous work, in which we proved that utilizing the three O-BMS degrees of freedom, namely, electric and magnetic polarizabilities, and magnetoelectric coupling, any field transformation that obeys local power conservation can be implemented via passive lossless components. When the O-BMS acts as the top cover of a metallic cavity excited by a point source, this property allows optimization of the metasurface modal reflection coefficients to establish any desirable power profile on the aperture. Matching in this way the excitation profile to the target power profile corresponding to the desirable aperture fields allows emulation of arbitrary discrete antenna array radiation patterns. The resultant low-profile probed-fed cavity-excited O-BMS antennas offer a new means for meticulous pattern control, without requiring complex, expensive, and often lossy, feed networks.
机译:我们提出了一种设计腔兴奋的ω-Bianisropic Metasurface(O-BMS)天线的方法,该天线能够产生由天线阵列理论规定的任意辐射图案。该方法依赖于之前的工作,其中我们证明利用三个O-BMS自由度,即电磁极和磁极耦合,以及磁电耦合,可以通过被动无损部件来实现obeys局部节能的任何场转换。当O-BMS充当由点源激发的金属腔的顶盖时,该属性允许优化元表面模态反射系数以在孔上建立任何所需的功率曲线。以这种方式匹配与所期望的孔径字段对应的目标功率分布的激发曲线允许仿真任意离散天线阵列辐射图案。所得到的低调探测液型腔激励O-BMS天线为细致的模式控制提供了一种新的手段,而不需要复杂,昂贵,并且通常有损的馈电网络。

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