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Reconfigurable Transmitarray Design Approaches for Beamforming Applications

机译:用于波束成形应用的可重构发送阵列设计方法

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Recent advances in wireless sensing and communications have resulted in the need for antennas capable of high-directivity reconfigurable beamforming. Transmitarrays have been shown to be viable architectures, and two general design approaches have emerged: the layered-scatterer approach and the guided-wave approach. In this paper, we first investigate the beamforming capability of the layered-scatterer approach, generalizing the approach using impedance surfaces. Using Floquet mode analysis, we show that when a structure of this type is used to produce a pencil beam at angles greater than 20 degrees off-broadside, significant side-lobes are produced at large angles, regardless of the aperture size. Next, we present a fully reconfigurable 6 $times$ 6 transmitarray based on a guided-wave approach that experimentally demonstrates both pencil beam scanning over a 100 $times$ 100-degree window as well as shaped-beam synthesis, over a 10 percent fractional bandwidth. The conclusion from our investigations into these two approaches is that for general beamforming applications, the guided-wave approach is superior, achieving good bandwidth, scanning range, insertion loss, and small structure thickness, with only moderate fabrication complexity.
机译:无线感测和通信方面的最新进展导致需要能够进行高方向性可重构波束成形的天线。传输阵列已被证明是可行的架构,并且出现了两种通用的设计方法:分层散射器方法和导波方法。在本文中,我们首先研究了分层散射方法的波束形成能力,并概括了使用阻抗表面的方法。使用Floquet模式分析,我们显示出,当使用这种类型的结构以非宽视角大于20度的角度产生笔形光束时,无论孔径大小如何,都会以大角度产生明显的旁瓣。接下来,我们介绍一种基于导波方法的完全可重新配置的6 x 6发射阵列,该阵列通过实验演示了100%x 100度窗口上的笔形光束扫描以及10%的分数光束合成带宽。从我们对这两种方法的研究得出的结论是,对于一般的波束成形应用,导波方法是优越的,它实现了良好的带宽,扫描范围,插入损耗和较小的结构厚度,并且仅具有中等的制造复杂性。

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