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Dual-Polarized and Polarization-Flexible Reflective Cells With Dynamic Phase Control

机译:具有动态相位控制的双极化和偏振柔性反射单元

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A reflecting cell allowing the dynamic and independent control of the reflection phase of two perpendicular linearly-polarized waves is presented. This capability is useful for the implementation of dual-polarized beam-reconfigurable reflectarrays, as well as for new reflector functionalities such as linear/circular polarization-flexibility and polarization-twisting with simultaneous phase control. The concept is demonstrated on a unit cell operating at 8 GHz, using surface-mounted diodes. In addition to its polarization capability, the cell implements a new concept to overcome the usual tradeoff between phase range and loss in monolayer reflective cells, using a combination of PIN and varactor diodes. For each linearly-polarized component, a dynamic phase range over 360$^{circ}$ is achieved at 8 GHz under normal incidence, with 4 dB and 2 dB of maximum and average loss, respectively. The modeling of the cell in a general periodic environment, along with measurements in a waveguide simulator, show that similar performance is preserved within a 5% bandwidth and under TE and TM oblique incidences up to 45$^{circ}$ . The cell size is only $0.42lambda$ at 8 GHz.
机译:提出了一种反射单元,其允许动态和独立地控制两个垂直线性极化波的反射相位。此功能对于实现双偏振光束可重新配置的反射阵列以及新的反射器功能(例如线性/圆形偏振柔韧性和同时进行相位控制的偏振扭曲)很有用。使用表面安装的二极管在工作于8 GHz的单位单元上演示了该概念。除极化能力外,该单元还采用PIN和变容二极管的组合,实现了一种新概念,以克服单层反射单元中相范围和损耗之间的通常折衷。对于每个线性极化分量,在法向入射下的8 GHz处,动态相位范围均超过360°,最大和平均损耗分别为4 dB和2 dB。在一般周期性环境中对单元进行建模,并在波导模拟器中进行测量,结果表明,在5%的带宽内以及在TE和TM斜入射高达45%的情况下,仍保留了相似的性能。在8 GHz时,单元大小仅为$0.42λ$。

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