一种新的跳频ISAR成像平移运动补偿方法

Zheng Liu, Shouhong Zhang
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引用次数: 13

摘要

将跳频脉冲波形应用于逆合成孔径雷达(ISAR)成像中,提出了一种新的ISAR成像运动补偿方法——最小波形熵参数估计法。一个称为波形熵的测量函数被用来测量目标运动对多普勒振幅谱和倾斜距离轮廓的影响。该方法可以基于最小波形熵规则实现目标运动参数的最优估计。此外,该方法将对目标速度和加速度的二维搜索转换为对速度和加速度的二维搜索,大大降低了计算成本,方便实现实时处理。仿真结果表明,该方法能够准确估计目标的运动参数,并具有良好的抗噪性能,从而可以在杂波背景下对目标进行成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel method of translational motion compensation for hopped-frequency ISAR imaging
With adoption of the hopped-frequency pulse waveform to inverse synthetic aperture radar (ISAR), a novel method for motion compensation in ISAR imaging, named the minimum waveform entropy method of parameter estimation, is proposed. A measure function, called the waveform entropy, is employed to measure the effects of target motion on both Doppler amplitude spectra and slant range profiles. The method can achieve optimal estimation of motion parameters of a target based on the minimum waveform entropy rule. In addition, the method converts a two-dimensional search for the velocity and acceleration of a target into two one-dimensional searches for the velocity and acceleration respectively, which greatly decreases computational cost, and conveniently realizes real-time processing. Simulation results indicate that the method can accomplish accurate estimation of motion parameters of a target with a good anti-noise performance, thus making it possible to image a target in clutter background.
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