一种用于超宽带近场高分辨率成像的二维MIMO阵列拓扑

K. Tan, S. Y. Wu, Y. C. Wang, S. Ye, X. Liu, G. Fang
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引用次数: 1

摘要

本文根据有效孔径均匀分布和较少遮挡的设计原则,提出了一种新型的二维稀疏超宽带(UWB)多输入多输出(MIMO)天线阵列拓扑结构,用于近场高分辨率成像。与具有相同收发器数量的另一种不同阵列相比,所提出的最优阵列对模拟辐射方向图的干扰区和非干扰区旁瓣电平(SL)都有更好的控制,得到的最优阵列的峰值旁瓣电平(PSLs)低于对比阵列。对人体模型目标的实验成像结果也验证了该阵列出色的成像能力。因此,所提出的阵列拓扑在高质量的超宽带近场成像中具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel two-dimensional MIMO array topology for UWB near-field high-resolution imaging
In this paper, according to the two design principles of uniform distribution and less element shadowing for effective aperture, a novel two-dimensional (2-D) sparse ultra-wideband (UWB) multiple-input-multiple-output (MIMO) antenna array topology is proposed for near-field high-resolution imaging. Compared with another different array having the same number of transceivers, the proposed optimal array has a better control over the sidelobe level (SL) both in the interference region (IR) and non-interference region (NIR) of the simulated radiation patterns, from which the peak sidelobe levels (PSLs) of the optimal array obtained are lower than the compared one. Experimental imaging results for a mannequin target also verify the outstanding imaging capability of the proposed array. Therefore, the proposed array topology has potential applications for high-quality UWB near-field imaging.
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