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用于一维波束转向应用的全介质平面米卡埃利安透镜天线的性能分析。

Performance analysis of an all-dielectric planar Mikaelian lens antenna for 1-D beam-steering application.

作者信息

Shao Wenyi, Chen Qiang

出版信息

Opt Express. 2021 Aug 30;29(18):29202-29214. doi: 10.1364/OE.438182.

DOI:10.1364/OE.438182
PMID:34615035
Abstract

This paper investigates the performance of an all-dielectric planar Mikaelian lens based on ray transfer matrices and full-wave analysis for 1-D beam-steering application. This new lens concept has its intrinsic flat shape characteristic allowing for a simple low-cost planar feed technology. To verify the design concept, a lens prototype excited by five rectangular microstrip patch antennas with perforated structure (21×24 holes) is fabricated using stereolithography (SLA) 3-D printing. The simulated and measured results of the proposed lens prototype, operating at 10 GHz, shows that the switched-beam coverage over a certain range of beam-steering angles can be obtained. The intrinsic phase error of lens resulting from comatic aberration exhibits obvious increase as the off-axis angle of beam increases, which leads to further deterioration of the corresponding radiated beam. The beam-steering capabilities from -20° to +20° with around 13.2 dBi of realized gain and side-lobe level (less than -11.5dB), and up to potential steering angles (±30°) with around 10 dBi of realized gain can be steadily achieved. Moreover, the realized gain, efficiency and side-lobe level can be further improved to get better radiation performances by using other materials with lower loss tangent. Due to its intrinsic flat shape characteristic, this lens concept could be a potential alternative to develop a low-cost, low-profile and easy-to-fabricate beam-switching array antenna for microwave communication applications.

摘要

本文基于光线传输矩阵和全波分析,研究了一种用于一维波束转向应用的全介质平面米卡elian透镜的性能。这种新型透镜概念具有固有的扁平形状特性,允许采用简单的低成本平面馈电技术。为了验证设计概念,使用立体光刻(SLA)3D打印制造了一个由五个带有穿孔结构(21×24个孔)的矩形微带贴片天线激励的透镜原型。所提出的透镜原型在10 GHz下工作的模拟和测量结果表明,可以在一定范围的波束转向角度上获得切换波束覆盖。由彗差引起的透镜固有相位误差随着波束离轴角度的增加而明显增大,这导致相应辐射波束的进一步恶化。可以稳定地实现从-20°到+20°的波束转向能力,实现增益约为13.2 dBi,旁瓣电平(小于-11.5dB),以及在高达潜在转向角度(±30°)时实现增益约为10 dBi。此外,通过使用具有较低损耗角正切的其他材料,可以进一步提高实现的增益、效率和旁瓣电平,以获得更好的辐射性能。由于其固有的扁平形状特性,这种透镜概念可能是开发用于微波通信应用的低成本、低剖面且易于制造的波束切换阵列天线的潜在替代方案。

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