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A new design of multi-bit RF MEMS distributed phase shifters for phase error reduction

机译:用于减少相位误差的多位RF MEMS分布式移相器的新设计

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摘要

In this paper, the major source of phase error for multi-bit MEMS distributed phase shifters, the mismatch between adjacent bits, is investigated. A quantitative account of the phase deviation with the effect of mismatch considered is presented by the simulated results as well as theoretically calculated results. A novel multi-bit distributed MEMS phase shifter aimed to eliminate this error source is proposed. The basic concept for the structure is that, by controlling the phase shifter from the unit cell level, performance deterioration resulted from multiple reflection of the signal in the device in the phase state switching process is avoided. To verify the feasibility of the proposed structure, two X-band 5-bit distributed phase shifters are designed and simulated. Compared with the traditional structure, the average phase errors in all phase states of the two are improved by 28.22 and 36.52% at 10 GHz. The average RMS phase errors in the bandwidth of 1-12-GHz of 56 frequency points are 1.23° and 1.85°. The improvements of the return loss and insertion loss are also exhibited. Furthermore, the aperiodic distributed phase shifter using different unit cells is introduced to demonstrate that the proposed structure can also be used to decrease the number of MEMS switches of multi-bit MEMS distributed phase shifters.
机译:本文研究了多位MEMS分布式移相器的主要相位误差源,即相邻位之间的失配。仿真结果和理论计算结果都给出了考虑了失配影响的相位偏差的定量说明。提出了一种旨在消除该误差源的新型多位分布式MEMS移相器。该结构的基本概念是,通过从单位单元水平控制移相器,可以避免在相状态切换过程中由于信号在设备中的多次反射而导致的性能下降。为了验证所提出结构的可行性,设计并仿真了两个X波段5位分布式移相器。与传统结构相比,两者在10 GHz时所有相位状态下的平均相位误差分别提高了28.22%和36.52%。 56个频率点在1-12 GHz带宽中的平均RMS相位误差为1.23°和1.85°。还表现出回波损耗和插入损耗的改善。此外,介绍了使用不同单位单元的非周期性分布式移相器,以证明所提出的结构还可用于减少多位MEMS分布式移相器的MEMS开关数量。

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