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Uniform rotational motion compensation for inverse synthetic aperture radar targets from image domain

机译:逆合成孔径雷达目标像域的均匀旋转运动补偿

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Since high-resolution inverse synthetic radar (ISAR) images are significant in the analysis of moving targets, this paper, for the first time, proposes a novel method to compensate the uniform rotational motion by estimating the effective rotational velocity (ERV) in image domain. Specifically, we extract high-energy scatterers of sequent ISAR images by scale invariant feature transform (SIFT) in order to link them with the related ERV in the imaging panel. Then we adopt registering approach based on minimum Euclidian distance and Gaussian probabilistic density function to select scatterers with the mostly similar rotational aspect. After that, we estimate the ERV in a searching manner, and then employ it in the cancellation of quadratic-order phase items in the cross-range cells of the image. This method is validated quick and efficient by both simulated and real signal experiments.
机译:由于高分辨率逆合成雷达(ISAR)图像在运动目标分析中具有重要意义,因此,本文首次提出了一种通过估计像域中的有效旋转速度(ERV)来补偿均匀旋转运动的新方法。 。具体来说,我们通过尺度不变特征变换(SIFT)提取了后续ISAR图像的高能散射体,以便将它们与成像面板中的相关ERV关联起来。然后我们采用基于最小欧几里得距离和高斯概率密度函数的配准方法来选择旋转角度最相似的散射体。之后,我们以搜索的方式估计ERV,然后将其用于图像跨范围单元中的二次相位项的抵消。该方法已通过仿真和真实信号实验快速有效地验证。

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