Three-Dimensional Down-View Imaging Based on MIMO Through-Wall-Radar

Zihan Xu, Li Jiang, Yiduo Liang, Yong Jia, G. Cui, Longfei Tan
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引用次数: 2

Abstract

MIMO through-wall-radar is traditionally utilized to perform forward-view imaging (FVI) for the hidden targets behind the wall. Due to the limited view angle and target occlusion, FVI usually suffers from the problem of target missing in the case of multiple targets. In this paper, a novel down-view imaging (DVI) mode is presented to obtain robust three-dimensional (3D) multiple target images without target missing. Specifically, the propagation characteristic is analyzed for the 3D DVI in an enclosed building space. Then the DVI algorithm is introduced. Specifically, the back-projection algorithm is applied to form a 3D image and the exponential phase coherence factor (EPCF) weighting is adopted to suppress the multi-path ghosts. Based on the gprMax simulation results, in the presence of target occlusion, it is demonstrated that the presented DVI method has the ability to implement robust imaging for multiple targets, while the FVI misses the obscured target.
基于MIMO穿壁雷达的三维下视成像
MIMO穿墙雷达传统上用于对墙后隐藏目标进行前视成像(FVI)。由于视角的限制和目标遮挡,在多目标情况下,FVI往往存在目标缺失的问题。本文提出了一种新的下视成像(DVI)模式,以获得鲁棒的三维多目标图像而不丢失目标。具体来说,分析了三维DVI在封闭建筑空间中的传播特性。然后介绍了DVI算法。具体而言,采用反投影算法生成三维图像,并采用指数相位相干系数(EPCF)加权来抑制多径鬼影。基于gprMax仿真结果,在目标遮挡存在的情况下,证明了所提出的DVI方法能够实现多目标的鲁棒成像,而FVI会遗漏被遮挡的目标。
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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