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Blind-velocity SAR/ISAR imaging of a moving target in a stationary background

机译:静止背景下移动目标的盲速SAR / ISAR成像

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A synthetic aperture radio/inverse synthetic aperture radar (SAR/ISAR) coherent system model and inversion to image a target moving with an unknown constant velocity in a stationary background are presented. The approach is based on a recently developed system modelling and inversion principle for SAR/ISAR imaging that utilizes the spatial Fourier decomposition of SAR data in the synthetic aperture domain to convert the SAR system model's nonlinear phase functions into linear phase functions suitable for a computationally manageable inversion. It is shown that SAR/ISAR imaging of a moving target can be converted into imaging the target in a stationary squint-mode SAR problem where the parameters of the squint-mode geometry depend on the target's velocity. A method for estimating the moving target's velocity that utilizes a spatial Doppler analysis of the SAR data within overlapping subapertures is presented. The spatial Doppler technique does not require the radar signal to be narrowband, so the reconstructed image's resolution is not sacrificed to improve the target's velocity estimator.
机译:提出了一种合成孔径无线电/合成孔径逆雷达(SAR / ISAR)相干系统模型,并对在静止背景下以未知恒定速度运动的目标成像的反演方法。该方法基于最近开发的SAR / ISAR成像系统建模和反演原理,该原理利用合成孔径域中SAR数据的空间傅里叶分解将SAR系统模型的非线性相位函数转换为适合于计算可管理的线性相位函数。倒置结果表明,可以将运动目标的SAR / ISAR成像转换为静止斜视SAR问题中的目标成像,其中斜视几何结构的参数取决于目标的速度。提出了一种估计运动目标速度的方法,该方法利用了重叠子孔径内SAR数据的空间多普勒分析。空间多普勒技术不需要雷达信号是窄带的,因此不会牺牲重建图像的分辨率来改善目标的速度估算器。

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