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Moving Target Relative Speed Estimation and Refocusing in Synthetic Aperture Radar Images

机译:合成孔径雷达图像中的移动目标相对速度估计和重新聚焦

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摘要

In this paper, a method for moving target relative speed estimation and refocusing based on synthetic aperture radar (SAR) images is derived and tested in simulation and on real data with good results. Furthermore, an approach on how to combine the estimation method with the refocusing method is introduced. The estimation is based on a chirp estimator that operates in the SAR image and the refocusing of the moving target is performed locally using subimages. Focusing of the moving target is achieved in the frequency domain by phase compensation, and therefore makes it even possible to handle large range cell migration in the SAR subimages. The proposed approach is tested in a simulation and also on real ultrawideband (UWB) SAR data with very good results. The estimation method works especially well in connection with low frequency (LF) UWB SAR, where the clutter is well focused and the phase of the smeared moving target signal becomes less distorted. The main limitation of the approach is target accelerations where the distortion increases with the integration time.
机译:本文提出了一种基于合成孔径雷达(SAR)图像的运动目标相对速度估计和重聚焦方法,并在仿真和真实数据中进行了测试,结果良好。此外,介绍了一种如何将估计方法与重新聚焦方法相结合的方法。该估计基于在SAR图像中运行的线性调频估计器,并且使用子图像在本地执行移动目标的重新聚焦。通过相位补偿在频域中实现对移动目标的聚焦,因此甚至可以处理SAR子图像中的大范围单元迁移。所提出的方法在仿真中以及在实际超宽带(UWB)SAR数据上进行了测试,均具有很好的效果。该估计方法与低频(LF)UWB SAR结合使用时效果特别好,在这种情况下,杂波被很好地聚焦,并且拖尾的移动目标信号的相位变得较少失真。该方法的主要限制是目标加速度,其中失真随积分时间的增加而增加。

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