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A novel two-dimensional MIMO array topology for UWB near-field high-resolution imaging

机译:用于UWB近场高分辨率成像的新型二维MIMO阵列拓扑

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摘要

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.
机译:在本文中,根据有效孔径的均匀分布和少元素阴影的两个设计原则,提出了一种新型的二维(2-D)稀疏超宽带(UWB)多输入多输出(MIMO)天线阵列提出了一种用于近场高分辨率成像的拓扑结构。与具有相同收发器数量的另一个不同阵列相比,所提出的最佳阵列可以更好地控制模拟辐射方向图的干扰区域(IR)和非干扰区域(NIR)中的旁瓣电平(SL)。所获得的最佳阵列的峰值旁瓣电平(PSL)低于比较的那个。人体模型目标的实验成像结果也验证了所提出阵列的出色成像能力。因此,所提出的阵列拓扑结构对于高质量UWB近场成像具有潜在的应用。

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