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ISAR Imaging for Low-Earth-Orbit Target Based on Coherent Integrated Smoothed Generalized Cubic Phase Function

机译:基于连贯的集成平滑的广义立方相位函数的低地轨道目标的ISAR成像

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In the high-resolution inverse synthetic aperture radar (ISAR) imaging of low-earth-orbit space targets, the received signal from one range bin can be modeled as a multicomponent cubic phase signal (CPS) after motion compensation. The chirp rates and the quadratic chirp rates of the multicomponent CPS need to be estimated with parameter estimation algorithms to obtain the focused ISAR image. In this article, a new parametric range-instantaneous-Doppler ISAR imaging method is proposed, which introduces a new algorithm for parameter estimation of multicomponent CPSs. The cross terms of the generalized cubic phase function (GCPF) are analyzed. By eliminating the cross terms in the ambiguity function domain, the coherent integrated smoothed GCPF (CISGCPF) is proposed to estimate the quadratic chirp rates. Numerical examples are provided to verify the accuracy of the parameter estimation and the effectiveness of the cross-term suppression for CISGCPF in processing multicomponent signals. Simulated and real data imaging results demonstrate the performance of the CISGCPF-based ISAR imaging method. Comparisons with the existing algorithms show that the proposed method is effective in reconstructing focused images with less fake scatterers.
机译:在低地轨道空间目标的高分辨率逆合成孔径雷达(ISAR)成像中,来自一个范围内的接收信号可以在运动补偿之后被建模为多组分立方相信号(CPS)。需要利用参数估计算法估计多组分CP的啁啾率和二次啁啾率,以获得聚焦的ISAR图像。在本文中,提出了一种新的参数范围 - 瞬时 - 多普勒ISAR成像方法,其介绍了一种用于多组分CPS的参数估计的新算法。分析了广义立方相函数(GCPF)的横向术语。通过消除歧义功能域中的横向术语,提出了相干的集成平滑GCPF(CISGCPF)以估计二次啁啾率。提供了数值示例以验证参数估计的准确性和CISGCPF在处理多组分信号时的横术抑制的有效性。模拟和实际数据成像结果证明了基于CISGCPF的ISAR成像方法的性能。与现有算法的比较表明,该方法在重建具有较少假散射体的聚焦图像方面是有效的。

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