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Geometry-Information-Aided Efficient Radial Velocity Estimation for Moving Target Imaging and Location Based on Radon Transform

机译:基于Radon变换的几何信息辅助运动目标成像和定位的有效径向速度估计

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Real-time radial velocity estimation is a key challenge for moving target imaging and location in current single-antenna synthetic aperture radar (SAR)-ground moving target indication systems. Since the conventional methods suffer from ambiguity, complexity realization, or heavy computation load for fast moving target motion estimation, this paper emphasizes the estimation efficiency by simple realization. An efficient Radon transform (RT) estimation is proposed to estimate the radial velocity of fast moving target by utilizing the geometry information, and much more geometry information is exploited to realize clutter cancellation, noise cancellation, and estimation error minimizing in the RT domain, which is not proposed by the others. With only two to four angles used to calculate rather than search for the radial velocity of moving targets, the proposed methods simplify the conventional range and angle (2-D) searching procedure into several time range (1-D) searching procedure efficiently. The theoretical and experimental analysis provides qualitative and quantitative evaluations into the effectiveness of the proposed methods. In the single-antenna SAR system, the proposed methods can estimate the radial velocity of fast moving target efficiently and accurately in high signal to clutter plus noise ratio scenarios.
机译:在当前的单天线合成孔径雷达(SAR)-地面移动目标指示系统中,实时径向速度估计是移动目标成像和定位的关键挑战。由于传统方法在快速移动目标运动估计中存在歧义,复杂性实现或计算量大的问题,因此本文通过简单实现来强调估计效率。提出了一种有效的Radon变换(RT)估计方法,以利用几何信息来估计快速移动目标的径向速度,并利用更多的几何信息来实现RT域中的杂波消除,噪声消除和估计误差最小化,从而不是别人提出的。利用仅二到四个角度来计算而不是搜索运动目标的径向速度,所提出的方法将传统的距离和角度(2-D)搜索过程简化为几个时间范围(1-D)搜索过程。理论和实验分析为所提出方法的有效性提供了定性和定量评估。在单天线SAR系统中,该方法可以在高信噪比和高噪声比的情况下,高效,准确地估计快速移动目标的径向速度。

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