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Doppler Frequency Estimation of Point Targets in the Single-Channel SAR Image by Linear Least Squares

机译:基于线性最小二乘的单通道SAR图像中目标点的多普勒频率估计

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This paper presents a method and results for the estimation of residual Doppler frequency, and consequently the range velocity component of point targets in single-channel synthetic aperture radar (SAR) focused single-look complex (SLC) data. It is still a challenging task to precisely retrieve the radial velocity of small and slow-moving objects, which requires an approach providing precise estimates from only a limited number of samples within a few range bins. The proposed method utilizes linear least squares, along with the estimation of signal parameters via rotational invariance techniques (ESPRIT) algorithm, to provide optimum estimates from sets of azimuth subsamples that have different azimuth temporal distances. The ratio of estimated Doppler frequency to root-mean square error (RMSE) is suggested for determining a critical threshold, optimally selecting a number of azimuth subsample sets to be involved in the estimation. The proposed method was applied to TerraSAR-X and KOMPSAT-5 X-band SAR SLC data for on-land and coastal sea estimation, with speed-controlled, truck-mounted corner reflectors and ships, respectively. The results demonstrate its performance of the method, with percent errors of less than 5%, in retrieved range velocity for both on-land and in the sea. It is also robust, even for weak targets with low peak-to-sidelobe ratios (PSLRs) and signal-to-clutter ratios (RCSs). Since the characteristics of targets and clutter on land and in the sea are different, it is recommended that the method is applied separately with different thresholds. The limitations of the approach are also discussed.
机译:本文提出了一种估计剩余多普勒频率的方法和结果,并因此得出了单通道合成孔径雷达(SAR)聚焦单视场(SLC)数据中点目标的距离速度分量。精确地检索小型且运动缓慢的物体的径向速度仍然是一项艰巨的任务,这需要一种方法,该方法只能从几个范围内的有限数量的样本中提供精确的估计值。所提出的方法利用线性最小二乘法,以及通过旋转不变技术(ESPRIT)算法对信号参数进行估计,以从具有不同方位时间距离的方位子样本集中提供最佳估计。建议使用估计的多普勒频率与均方根误差(RMSE)的比率来确定临界阈值,从而最佳地选择要参与估计的多个方位角子样本集。所提出的方法被应用于TerraSAR-X和KOMPSAT-5 X波段SAR SLC数据,用于陆上和沿海海域估计,分别使用速度控制,安装在卡车上的角反射器和船舶。结果证明了该方法的性能,在陆上和海上的测距速度中,误差均小于5%。即使对于具有较低的峰旁瓣比(PSLR)和信号杂波比(RCS)的弱目标,它也很强大。由于陆地和海洋中目标和杂波的特性不同,因此建议单独使用具有不同阈值的方法。还讨论了该方法的局限性。

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