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2-Bit Phase Quantization Using Mixed Polarization-Rotation/Non-Polarization- Rotation Reflection Modes for Beam-Steerable Reflectarrays

机译:使用混合偏振/非极化旋转反射模式的2位相位量化,用于光束可转向反射阵列

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摘要

We present a new method for achieving 2-bit phase quantization for beam-steerable reflectarrays by exploiting four distinct reflection modes of a unit cell. Two of the four modes perform polarization-rotation (PR) operation while the other two are non-PR modes when the unit cell is illuminated by an $x$ - or $y$ -polarized incident wave. With a specific phase relation between the four reflection modes, the unit cell acts as a 2-bit phase shifter under illumination with an incident wave polarized along a diagonal direction of the square-shaped unit cell. The proposed operating principle was demonstrated with an illustrative unit cell consisting of three metallic layers and using four single-junction connections that can be replaced with single-pole single-throw (SPST) switches for reconfiguration. Simulation results predict an operating bandwidth of about 20% for the unit cell and a good beam scanning performance over a scan range of ±45° for a beam-steerable reflectarray constructed using this unit cell. Two static prototypes of the beam-steerable reflectarray antenna providing beam collimation at two different directions at 10 GHz were fabricated and experimentally characterized. Measurement results show good agreement with the simulation results, validating the proposed design approach for 2-bit reflective unit cells.
机译:我们通过利用单元电池的四个不同的反射模式来提出一种用于实现光束可操纵反射阵列的2位相位量化的新方法。四种模式中的两个执行偏振旋转(PR)操作,而当单位单元格由<内联公式XMLNS照射时,其他两个是非PR模式:MML =“http://www.w3.org/1998 / math / mathml“xmlns:xlink =”http://www.w3.org/1999/xlink“> $ x $ - 或 $ Y $ -Polarized Infifict Wave。利用四种反射模式之间的特定相位关系,单元电池用作沿着方形单元电池的对角线方向偏振的入射波的照明中的2位移相器。通过由三个金属层组成的说明性单元电池和使用四个单掷(SPST)开关组成的说明性单元电池,并使用四个单掷弹簧(SPST)开关来证明所提出的操作原理。仿真结果预测单元电池的操作带宽约为20%,并且在使用该单元电池构造的光束可转向反射阵列的扫描范围内的扫描范围内的良好光束扫描性能。在10GHz的两个不同方向上提供梁可转射阵列天线的两个静态原型,以10GHz在10GHz下进行制造和实验表征。测量结果与仿真结果表现出良好的一致性,验证了2位反射单元电池的所提出的设计方法。

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