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Practical Design Considerations for Compact Array-Fed Huygens’ Dielectric Lens Antennas

机译:紧凑型阵列馈源惠更斯电介质透镜天线的实用设计考虑

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摘要

This paper presents a practical design consideration for the dielectric lens based on Huygens’ principle (HP) at a short distance (=λ0/2) from a feed antenna to overcome the limitation of the conventional design method. It is suggested that certain ranges of dielectric thickness values are not considered to exclude undesired resonant effects that hamper the effectiveness of Huygens’ lens which relies on phase shifting elements. In the proposed HP-based design method, phase distributions are captured at the target distance away from the feed array for the two cases of 2 × 2 and 1 × 4 array antennas and based on these, the proposed lens topology is designed to compensate the phase distributions for gain enhancement. A case study shows that the proposed HP-based design approach considering the actual phase information and undesired dielectric resonant phenomenology can achieve a gain enhancement of up to 5.34 dB compared to the conventional dielectric lens, depending on the feed array arrangement that can render circular or elliptic shapes of phase distributions for radiated fields.
机译:本文提出了一种基于惠更斯原理(HP)的介电透镜的实用设计考虑,它距馈电天线很短距离(=λ0/ 2),以克服传统设计方法的局限性。建议不要将介电层厚度值的某些范围排除在外,因为共振效应会妨碍惠更斯依赖相移元件的透镜的有效性。在提出的基于HP的设计方法中,对于2×2和1×4阵列天线的两种情况,在距馈源阵列的目标距离处捕获相位分布,并基于这些情况设计了拟议的透镜拓扑,以补偿相位分布以提高增益。案例研究表明,与传统的介电透镜相比,考虑到实际相位信息和不希望的介电共振现象学的基于HP的设计方法可以实现高达5.34 dB的增益增强,具体取决于可以呈现圆形或圆形的馈电阵列布置。辐射场的相位分布的椭圆形。

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