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Refocusing of Ground Moving Targets with Doppler Ambiguity Using Keystone Transform and Modified Second-Order Keystone Transform for Synthetic Aperture Radar

机译:使用Keystone变换和改进的二阶梯形变换为合成孔径雷达的多普勒模糊的地面移动目标的重新分开

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摘要

Ground moving targets will typically be defocused because of the range migration (RM) and Doppler frequency migration (DFM) caused by the unknown relative motions between the platform of synthetic aperture radar (SAR) and the ground moving targets. The received signal of the ground moving target easily exhibits the Doppler ambiguity, and the Doppler ambiguity leads to the refocusing difficulty of ground moving targets. To address these problems, a SAR refocusing method of ground moving targets with Doppler ambiguity based on modified second-order keystone transform (MSOKT) and keystone transform (KT) is presented in this paper. Firstly, the second-order phase is separated by the time reversing process. Secondly, MSOKT is performed to compensate the range curvature migration and DFM, and then the coefficient of the second-order phase is estimated. Finally, a well-refocused result of the moving target is achieved after KT and the estimated Doppler ambiguity number are used to eliminate residual range walk migration. The proposed method can accurately remove RM and DFM and effectively focus the moving targets without residual correction errors. Moreover, the effects of Doppler ambiguity (including Doppler center blur and spectrum split) and blind speed sidelobe are further avoided. On the basis of the analysis of cross-term for the multiple target case, the identification strategy of spurious peak of cross-term is proposed. Additionally, the developed method can be sped up by nonuniform fast Fourier transform without the interpolation operation. The effectiveness of the proposed method is verified by both airborne and spaceborne real data processing results.
机译:由于由合成孔径雷达(SAR)平台和地面移动目标之间的未知相对运动引起的范围迁移(RM)和多普勒频率迁移(DFM),通常是散焦的接地目标。地面移动目标的接收信号容易出现多普勒歧模,并且多普勒模糊性导致接地移动目标的重新焦点。为了解决这些问题,本文提出了一种基于改进的二阶梯形变换(MSOKT)和Keystone变换(KT)的多普勒模糊的地面移动目标的SAR Refuse耦合方法。首先,二阶阶段通过逆转过程分开。其次,执行MSOKT以补偿范围曲率迁移和DFM,然后估计二阶阶段的系数。最后,在KT和估计的多普勒咪米力下达到估计的多普勒咪差数来消除残留范围步行迁移的经过重新分段的结果。所提出的方法可以准确地移除RM和DFM,并有效地聚焦在没有剩余校正误差的情况下的移动目标。此外,进一步避免了多普勒模糊性(包括多普勒中心模糊和光谱分裂)和盲速侧链的影响。基于对多目标案例的截道分析,提出了奇异奇异峰的识别策略。另外,在没有插值操作的情况下,可以通过非均匀的快速傅立叶变换来加速开发的方法。通过空气传播和星载的真实数据处理结果验证了所提出的方法的有效性。

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