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Small-Size Square Ring 1-Bit Reconfigurable Transmitarray Unit Cell for C-Band Applications

机译:用于C波段应用的小尺寸方环1位可重新配置的传输阵列单元

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The paper presents a reconfigurable linear polarized transmitarray unit cell design with 1-bit phase quantization for C-band applications. The unit-cell structure consists of two square ring patches of reduced size, which are connected using a coupling element. Incorporating p-i-n diodes inside the coupling element allows controlling the current flow direction in the antennas and providing a 180° phase difference. An analysis of the unit-cell insertion loss contributed by small-size antennas and coupling between them is discussed. The p-i-n diode parasitic parameters are taken into consideration of the unit cell performance simulation. It was shown that the insertion loss caused by the p-i-n diodes parasitic parameters can be reduced. The original biasing circuitry providing p-i-n diodes control voltage is proposed. Simulation results of the reconfigurable unit cell are validated by measurements in a waveguide. As a result of measurements, the insertion loss is ?2.3 dB at 5.9 GHz, the reflection coefficient module is less than ?20 dB, the phase difference error does not exceed ± 1° in the passband, while 3-dB bandwidth corresponds to 180 MHz (3.4%).
机译:本文介绍了一种可重新配置的线性偏振发射阵列单元电池设计,具有用于C波段应用的1位相位量化。单位单元结构由两个方形环形块的减小尺寸组成,其使用耦合元件连接。在耦合元件内部的P-I-N二极管允许在天线中控制电流流动方向并提供180°相位差。讨论了通过小尺寸天线贡献的单位单元插入损耗和它们之间的耦合的分析。考虑到单元电池性能模拟,考虑P-I-N二极管寄生参数。结果表明,由P-I-N二极管寄生参数引起的插入损失可以减少。提出了提供P-I-N二极管控制电压的原始偏置电路。通过波导中的测量验证了可重构单元电池的仿真结果。由于测量结果,插入损耗是?2.3 dB在5.9 GHz,反射系数模块小于Δ20dB,相差误差在通带中不超过±1°,而3 dB带宽对应于180 MHz(3.4%)。

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