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Direct path interference suppression for short-range passive bistatic synthetic aperture radar imaging based on atomic norm minimisation and Vandermonde decomposition

机译:基于原子范数最小化和范德蒙德分解的短距离无源双基地合成孔径雷达成像直接路径干扰抑制

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摘要

A novel direct path interference (DPI) suppression method is proposed for passive bistatic synthetic aperture radar (SAR) imaging applications. Conventional time-domain processing methods cannot mitigate the DPI completely and will introduce errors into the target position estimation. By exploiting the sparsity of the DPI signal and the properties of its covariance matrix, the proposed method solves these problems by accurately estimating the time delay of DPI based on the atomic minimisation algorithm and Vandermonde decomposition in the frequency domain. The amplitude of DPI is then calculated by the least squares method. Simulations and experimental results of Wireless Fidelity-based passive bistatic SAR imaging of short-range targets show that the proposed method can suppress DPI more effectively and estimate the position of the target more accurately than the classical method.
机译:提出了一种新颖的直接路径干扰(DPI)抑制方法,用于被动双基地合成孔径雷达(SAR)成像应用。传统的时域处理方法无法完全缓解DPI,并将误差引入目标位置估计中。通过利用DPI信号的稀疏性及其协方差矩阵的性质,该方法通过基于原子最小化算法和Vandermonde分解在频域中准确估计DPI的时延来解决这些问题。然后通过最小二乘法计算DPI的幅度。基于无线保真度的近距离目标被动双基地SAR成像的仿真和实验结果表明,与传统方法相比,该方法可以更有效地抑制DPI,并更准确地估计目标位置。

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