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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Ground Moving Target Trajectory Reconstruction in Single-Channel Circular SAR
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Ground Moving Target Trajectory Reconstruction in Single-Channel Circular SAR

机译:单通道环形SAR地动目标弹道重构

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摘要

Synthetic aperture radar (SAR) has become an important technique for generating high-resolution images of the ground because of its all-weather capabilities. SAR imaging of stationary scenes is nowadays well mastered. Moving targets induce a delocalization and a defocusing effect in the azimuth direction in a SAR image. This latter effect can be used to detect moving targets, to image them, and to estimate their azimuthal velocity, but the main limitation is the impossibility to estimate the full target velocity vector, because of the Doppler shift dependence on azimuthal position and radial velocity. In this paper, we analyze the performances of a method that reconstructs the real target trajectory given the apparent positions of the moving target measured on SAR images acquired along a circular trajectory. We first outline the steps of this trajectory reconstruction methodology, then we perform a mathematical analysis of this methodology, and finally, we present some results on real data, around two French cities.
机译:合成孔径雷达(SAR)由于具有全天候能力,已成为一种生成地面高分辨率图像的重要技术。如今,固定场景的SAR成像已被很好地掌握。运动目标在SAR图像中沿方位角方向产生离域和散焦效果。后一种效果可用于检测运动目标,对其进行成像并估计其方位角速度,但是主要限制是由于多普勒频移对方位角位置和径向速度的依赖性,因此无法估算完整的目标速度矢量。在本文中,我们分析了在给定沿圆形轨迹获取的SAR图像上测得的运动目标的视在位置的情况下,重建实际目标轨迹的方法的性能。我们首先概述了这种轨迹重建方法的步骤,然后对该方法进行了数学分析,最后,我们在法国两个城市周围的真实数据上给出了一些结果。

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