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用于宽带、广角和偏振无关扩散散射的随机组合梯度超表面

Random Combinatorial Gradient Metasurface for Broadband, Wide-Angle and Polarization-Independent Diffusion Scattering.

作者信息

Zhuang Yaqiang, Wang Guangming, Liang Jiangang, Cai Tong, Tang Xiao-Lan, Guo Tongfeng, Zhang Qingfeng

机构信息

Air and Missile Defense College, Air Force Engineering University, Xi'an, 710051, China.

Southern University of Science and Technology, Shenzhen, 518055, China.

出版信息

Sci Rep. 2017 Nov 29;7(1):16560. doi: 10.1038/s41598-017-16910-4.

Abstract

This paper proposes an easy, efficient strategy for designing broadband, wide-angle and polarization-independent diffusion metasurface for radar cross section (RCS) reduction. A dual-resonance unit cell, composed of a cross wire and cross loop (CWCL), is employed to enhance the phase bandwidth covering the 2π range. Both oblique-gradient and horizontal-gradient phase supercells are designed for illustration. The numerical results agree well with the theoretical ones. To significantly reduce backward scattering, the random combinatorial gradient metasurface (RCGM) is subsequently constructed by collecting eight supercells with randomly distributed gradient directions. The proposed metasurface features an enhanced specular RCS reduction performance and less design complexity compared to other candidates. Both simulated and measured results show that the proposed RCGM can significantly suppress RCS and exhibits broadband, wide-angle and polarization independence features.

摘要

本文提出了一种简便、高效的策略,用于设计用于降低雷达散射截面(RCS)的宽带、广角和偏振无关的扩散超表面。采用由十字线和十字环(CWCL)组成的双共振单元胞来增强覆盖2π范围的相位带宽。为了进行说明,设计了倾斜梯度和水平梯度相位超胞。数值结果与理论结果吻合良好。为了显著降低后向散射,随后通过收集具有随机分布梯度方向的八个超胞构建了随机组合梯度超表面(RCGM)。与其他候选方案相比,所提出的超表面具有增强的镜面RCS降低性能和更低的设计复杂度。仿真和测量结果均表明,所提出的RCGM能够显著抑制RCS,并具有宽带、广角和偏振无关的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e303/5707397/52a11a4fd665/41598_2017_16910_Fig1_HTML.jpg

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