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Design, Manufacturing and Test of a Dual-Reflectarray Antenna With Improved Bandwidth and Reduced Cross-Polarization

机译:具有改善的带宽和减小的交叉极化的双反射阵列天线的设计,制造和测试

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摘要

A dual-offset reflectarray demonstrator has been designed, manufactured and tested for the first time. In the antenna configuration presented in this paper, the feed, the sub-reflectarray and the main-reflectarray are in the near field one to each other, so that the conventional approximations of far field are not suitable for the analysis of this antenna. The antenna is designed by considering the near-field radiated by the horn and the contributions from all the elements in the sub-reflectarray to compute the required phase-shift on each element of the main reflectarray. Both reflectarrays have been designed using broad-band elements based on variable-size patches in a single layer for the main reflectarray and two layers for the sub-reflectarray, incident field. The measured radiation patterns are in good agreement with the simulated results. It is also demonstrated that a reduction of the cross-polarization in the antenna is achieved by adjusting the patch dimensions. The antenna measurements exhibit a 20% bandwidth (12.2 GHz–15 GHz) (with a reduction of gain less than 2.5 dB) and a cross-polar discrimination better than 30 dB in the working frequency band.
机译:首次设计,制造和测试了双偏移量反射阵列演示器。在本文提出的天线配置中,馈源,子反射阵列和主反射阵列彼此在近场中,因此,远场的常规近似方法不适用于该天线的分析。通过考虑号角辐射的近场以及子反射阵列中所有元素的贡献来设计天线,以计算主反射阵列中每个元素所需的相移。两种反射阵列均基于宽带元件设计而成,宽带元件基于可变大小的色标,在单层中用于主反射阵列,在第二层中用于子反射阵列,即入射场。测得的辐射图与模拟结果非常吻合。还证明了通过调整贴片尺寸可以减小天线中的交叉极化。天线测量显示出20%的带宽(12.2 GHz至15 GHz)(增益降低小于2.5 dB),并且在工作频带中的交叉极化辨别度优于30 dB。

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