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Joint sparsity-driven three-dimensional imaging method for multiple-input multiple-output radar with sparse antenna array

机译:稀疏天线阵的多输入多输出雷达联合稀疏驱动三维成像方法

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摘要

Three-dimensional (3D) imaging of a moving target can be achieved via a wideband multiple-input multiple-output (MIMO) radar with planar array in a single snapshot. The sparse recovery (SR) method has been introduced to deal with the MIMO imaging problem with sparse array recently. For sparse linear array, SR method can successfully achieve the high cross-range resolution. For sparse planar array, however, it is not effective to use a SR algorithm directly in 2D cross-range direction, because the final 2D imagery will be blurred by the SR-induced range cell migration (RCM) in the former cross-range direction. To remove the RCM, a joint sparsity-driven method is proposed in this study by exploiting the joint sparsity of echo signal. An improved imagery can be obtained with fewer antennas and higher calculation efficiency. Comparative experiments demonstrate the superiority of the proposed method.
机译:可以通过在单个快照中具有平面阵列的宽带多输入多输出(MIMO)雷达来实现移动目标的三维(3D)成像。近年来,稀疏恢复(sparse recovery,SR)方法被引入来解决稀疏阵列的MIMO成像问题。对于稀疏线性阵列,SR方法可以成功实现高跨范围分辨率。但是,对于稀疏的平面阵列,直接在2D跨范围方向上使用SR算法是无效的,因为最终的2D图像会因SR引起的沿前跨范围方向的距离像元迁移(RCM)而变得模糊。为了消除RCM,本研究提出了一种利用回波信号的联合稀疏性的联合稀疏驱动方法。使用更少的天线和更高的计算效率可以获得更好的图像。比较实验证明了该方法的优越性。

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