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SAR Ground Moving Target Imaging Based on a New Range Model Using a Modified Keystone Transform

机译:SAR地面移动目标成像,基于新的范围模型使用修改后的梯形变换

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Imaging of a ground moving target (GMT) with synthetic aperture radar (SAR) is a challenging task, particularly when the Doppler ambiguity happens. This paper proposes a novel GMT range model and a novel Doppler ambiguity-tolerated GMT imaging algorithm based on modified keystone transform. In the proposed GMT range model, the range from radar antenna to the scattering center on the target is divided into two parts: the range from radar antenna to the target centroid and the projection length on the light of sight from the target centroid to the scattering center. Based on the new range model, a Doppler ambiguity-tolerated range cell migration correction (RCMC) method is proposed, in which keystone transform is modified to realize the differential RCMC by interpolation with nonzero phase sinc kernel. Finally, the GMT image is obtained in the range-Doppler domain by matched filtering in the slow-time domain and is restored into the 2-D space domain. The effectiveness of our proposed model and imaging method is demonstrated by both simulated and real airborne SAR data.
机译:具有合成孔径雷达(SAR)的地面移动目标(GMT)的成像是一个具有挑战性的任务,特别是当多普勒歧义发生时。本文提出了一种新的GMT范围模型和基于改进的梯形变换的新型多普勒歧义耐受GMT成像算法。在拟议的GMT范围模型中,目标从目标上的散射中心到散射中心的范围被分成两部分:从雷达天线到目标质心的范围和从目标质心的视线上的投影长度到散射中央。基于新的范围模型,提出了一种多普勒模糊的尺寸细胞迁移校正(RCMC)方法,其中修改了梯形变换,通过与非零相SINC内核的插值来实现差分RCMC。最后,通过慢时域中的匹配过滤在范围 - 多普勒域中获得GMT图像,并恢复到2-D空间域中。通过模拟和真正的空气传播的SAR数据证明了我们所提出的模型和成像方法的有效性。

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