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Azimuth Relocation for Multichannel SAR Ground Moving Targets via Noncoregistrated Inteferometry

机译:多通道SAR地面移动目标的方位角搬迁通过非诊断干涉测量

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摘要

A ground moving target usually shifts its initial azimuth location in the synthetic aperture radar (SAR) image due to the radial motion. To address this problem, a new azimuth relocation method is proposed for a multichannel SAR in this letter. Based on the signal analysis in the range-compressed domain, it is found that the zeroth-order term of the interferometric phase without coregistration is determined by the moving target's initial azimuth location. A new azimuth relocation method utilizing the noncoregistrated interferometric phase is then proposed. First, the moving target is detected after clutter suppression in the range-compressed domain. Then, the interferometric phase along the slow time without coregistration can be extracted for parameter estimation via the least-squares method. Compared with the existing radial velocity-based relocation methods, the proposed method has higher accuracy, and there is no azimuth location ambiguity problem even when the target has a large radial velocity. Finally, both the simulated and real data are provided to demonstrate the effectiveness of the proposed method.
机译:由于径向运动,地移动目标通常在合成孔径雷达(SAR)图像中将其初始方位角位置移动。为了解决这个问题,提出了一种新的方位角重定位方法,在这封信中为多声道SAR提出。基于在范围压缩域中的信号分析,发现没有核记分的干涉阶段的零顺序术语由移动目标的初始方位角定位确定。然后提出利用非诊断干涉间相的新的方位角重定位方法。首先,在范围压缩域中的杂波抑制之后检测移动目标。然后,可以通过最小二乘法向参数估计提取沿着没有核试验的慢速时间的干涉时间。与现有的基于径向速度的重定位方法相比,所提出的方法具有更高的精度,即使当目标具有大的径向速度,也没有方位定位歧义问题。最后,提供了模拟和实际数据,以证明所提出的方法的有效性。

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