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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Location and Imaging of Elevated Moving Target using Multi-Frequency Velocity SAR with Cross-Track Interferometry
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Location and Imaging of Elevated Moving Target using Multi-Frequency Velocity SAR with Cross-Track Interferometry

机译:高频率运动SAR跨轨干涉法对高架运动目标的定位与成像

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Synthetic aperture radar (SAR) location and imaging of moving targets in clutter have attracted much attention in recent years. Locations of moving targets in SAR images are determined not only by their geometric locations but also by their velocities that cause their SAR images de-focused, smeared, and mis-located. With a linear antenna array, velocity synthetic aperture radar (VSAR) can detect, focus, and locate slowly moving targets well. However, it may mis-locate fast moving targets in the azimuth (cross-range) direction, and sometimes even in the ground range direction if the targets are elevated above the ground. Although multiple frequency antenna array SAR (MFAASAR for short) can solve the azimuth mis-location, it still leaves the ground range migration of elevated targets unsolved. We propose an antenna array approach with cross-track interferometry, in which multiple wavelength signals are transmitted. We then propose a robust Chinese remainder theorem (CRT) based phase unwrapping algorithm. The proposed robust CRT-based phase unwrapping algorithm is robust to signal noise, which is different from the the conventional CRT-based phase unwrapping algorithm that is highly sensitive to signal noise and nonrobust. It is shown that our proposed multiple frequency interferometric velocity SAR (MFIn-VSAR) by applying our proposed robust phase unwrapping algorithm can locate both slowly and fast moving elevated targets correctly. An integrated MFIn-VSAR algorithm for moving target imaging is also presented.
机译:近年来,合成孔径雷达(SAR)的位置和杂波中移动目标的成像引起了广泛关注。 SAR图像中移动目标的位置不仅取决于其几何位置,还取决于导致其SAR图像散焦,模糊和错位的速度。借助线性天线阵列,速度合成孔径雷达(VSAR)可以很好地检测,聚焦和定位缓慢移动的目标。但是,如果将目标移动到地面上方,则可能会将快速移动的目标在方位(跨范围)方向上定位错误,有时甚至在地面范围方向上定位错误。尽管多频天线阵列SAR(简称MFAASAR)可以解决方位角的错误定位,但仍然无法解决高架目标的地面范围迁移问题。我们提出了一种跨轨干涉测量的天线阵列方法,其中可以传输多个波长信号。然后,我们提出了一种基于鲁棒的中国余数定理(CRT)的相位展开算法。所提出的鲁棒的基于CRT的相位解缠算法对信号噪声具有鲁棒性,这与对信号噪声和非鲁棒性高度敏感的常规基于CRT的相位解缠算法不同。结果表明,我们提出的鲁棒的相位解缠算法提出的多频干涉速度SAR(MFIn-VSAR)可以正确定位缓慢和快速移动的高架目标。还提出了一种用于运动目标成像的集成MFIn-VSAR算法。

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