Unlock the Potentials of Large-Element-Spacing Arrays: A Meta-Lens Solution for Grating-Lobe Suppression and Gain Enhancement

Zhengmei Wang;Shan Lin;Yuehe Ge;Zhizhang Chen;Jingjing Zhao;Jiahong Chen;Ziheng Zhou;Trevor S. Bird
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Abstract

Large-element-spacing (LES) antenna arrays present an attractive proposition with their cost-effectiveness and simplified structures. However, they often encounter the challenge of high-level grating lobes. This paper proposes a novel meta-lens methodology to effectively address the grating lobe issue in fixed-beam LES arrays. The proposed approach involves strategically positioning a meta-lens above the LES arrays at a suitable vertical distance. This setup enables precise manipulation and compensation of the near-field phase, resulting in the suppression or elimination of grating lobes without introducing additional design complexity. Comprehensive theoretical analyses, meticulous design calculations employing efficient numerical methods, rigorous field simulations, and practical experiments are conducted. The results demonstrate that our meta-lens solution achieves significant gratinglobe suppressions and substantial gain enhancements with only a marginal increase in system profile or volume. The proposed metalens approach is versatile and applicable to various LES antenna arrays, including sparse/thinned arrays, regardless of their size, element spacing, and configuration (uniform or non-uniform, periodic or aperiodic).
解锁大元间距阵列的潜力:用于光栅瓣抑制和增益增强的元透镜解决方案
大单元间距(LES)天线阵列以其成本效益和简化的结构成为一个有吸引力的命题。然而,他们经常遇到高电平光栅瓣的挑战。本文提出了一种新的元透镜方法来有效地解决固定光束LES阵列中的光栅瓣问题。所提出的方法包括策略性地将一个元透镜放置在LES阵列上方适当的垂直距离上。这种设置可以精确地操纵和补偿近场相位,从而在不引入额外设计复杂性的情况下抑制或消除光栅瓣。进行了全面的理论分析,采用高效的数值方法进行了细致的设计计算,进行了严格的现场模拟和实际实验。结果表明,我们的元透镜解决方案实现了显著的光栅瓣抑制和显著的增益增强,而系统轮廓或体积仅略有增加。所提出的超透镜方法是通用的,适用于各种LES天线阵列,包括稀疏/薄阵列,无论其尺寸,元件间距和配置(均匀或非均匀,周期或非周期)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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