Fast Velocity Estimation Based on Minimum Entropy and Newton Iteration in MIMO-ISAR Imaging

J. Su, Weidong Jiang, B. Tian
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Abstract

In the process of ISAR imaging, since the velocity of the non-cooperative target is unknown, imaging may be blur and even unable to focus. Therefore, MIMO-ISAR radar is introduced, and the target velocity estimation is the key and difficulty in the process. Based on the velocity estimation method of minimum entropy that has been proposed, this paper proposes a fast velocity estimation methods based on minimum entropy and Newton iteration to shorten the time and improve the efficiency of velocity estimation. Analysis and simulation results verify the feasibility of the proposed algorithm, which is of vital importance for improving the quality of MIMO-ISAR imaging and motion compensation.
基于最小熵和牛顿迭代的MIMO-ISAR成像快速速度估计
在ISAR成像过程中,由于非合作目标的速度未知,可能导致成像模糊甚至无法聚焦。因此,MIMO-ISAR雷达被引入,目标速度估计是其中的关键和难点。本文在已有最小熵速度估计方法的基础上,提出了一种基于最小熵和牛顿迭代的快速速度估计方法,缩短了速度估计的时间,提高了速度估计的效率。分析和仿真结果验证了该算法的可行性,对提高MIMO-ISAR成像质量和运动补偿具有重要意义。
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