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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Circuit-Driven Design Methodology for a Circular Polarizer Based on Modified Jerusalem Cross Grids
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A Circuit-Driven Design Methodology for a Circular Polarizer Based on Modified Jerusalem Cross Grids

机译:基于改进的耶路撒冷交叉网格的圆偏振器的电路驱动设计方法

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摘要

This paper presents an accelerated methodology to design a circular polarizer based on modified Jerusalem cross unit cells. The proposed three-layer planar polarizer features a high transparency to both TE and TM polarized fields while providing a quadrature phase difference between them, as required for the generation of circularly polarized fields. The structure is designed employing a circuit-driven approach in which two independent equivalent circuits describe the behavior of TE and TM modes through the polarizer. Featuring a unit cell volume of , the polarizer offers axial ratios of less than 3 and 1 dB over 20% and 7% bandwidths around 20 GHz, respectively, with an insertion loss less than 0.4 dB. Full-wave numerical simulations and experimental measurements verify not only the performance of the proposed polarizer but also the accuracy of the circuit-driven approach and its ability as a design tool.
机译:本文提出了一种基于改进的耶路撒冷交叉晶胞设计圆偏振器的加速方法。所提出的三层平面偏振器对TE和TM偏振场都具有很高的透明度,同时在它们之间提供了正交相位差,这是产生圆偏振场所需的。该结构是采用电路驱动的方法设计的,其中两个独立的等效电路描述了通过偏振器的TE和TM模式的行为。偏振器的单位晶格体积为,在20 GHz左右的20%和7%带宽上,轴向比分别小于3 dB和1 dB,插入损耗小于0.4 dB。全波数值模拟和实验测量不仅验证了所提出的偏振器的性能,而且验证了电路驱动方法的准确性及其作为设计工具的能力。

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