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Translational motion compensation in ISAR image processing

机译:ISAR图像处理中的平移运动补偿

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In inverse synthetic aperture radar (ISAR) imaging, the target rotational motion with respect to the radar line of sight contributes to the imaging ability, whereas the translational motion must be compensated out. This paper presents a novel two-step approach to translational motion compensation using an adaptive range tracking method for range bin alignment and a recursive multiple-scatterer algorithm (RMSA) for signal phase compensation. The initial step of RMSA is equivalent to the dominant-scatterer algorithm (DSA). An error-compensating point source is then recursively synthesized from the selected range bins, where each contains a prominent scatterer. Since the clutter-induced phase errors are reduced by phase averaging, the image speckle noise can be reduced significantly. Experimental data processing for a commercial aircraft and computer simulations confirm the validity of the approach.
机译:在逆合成孔径雷达(ISAR)成像中,相对于雷达视线的目标旋转运动有助于成像,而平移运动必须予以补偿。本文提出了一种新颖的两步平移运动补偿方法,该方法采用了一种自适应的距离跟踪方法进行距离箱对准,并采用一种递归多散射算法(RMSA)进行信号相位补偿。 RMSA的初始步骤等效于主导散射算法(DSA)。然后,从选定的范围仓中递归合成一个误差补偿点源,其中每个范围仓都包含一个突出的散射体。由于通过相位平均减少了杂波引起的相位误差,因此可以大大减少图像斑点噪声。商用飞机的实验数据处理和计算机仿真证实了该方法的有效性。

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