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Translational motion estimation and compensation in Inverse Synthetic Aperture Radar

机译:逆合成孔径雷达的平移运动估计与补偿

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For Inverse Synthetic Aperture Radar (ISAR) imaging of a ship, the only desired motion is the rotational motion of the target towards the Radar. The translational motion between the Radar and target can severely distort the image especially for Airborne Radar imaging a non-cooperative naval target. This paper presents a robust and computationally efficient algorithm for estimating the translational motion between the Radar and target from the collected data itself and compensating for it. The algorithm is based on batch profile correlation and phase compensation in the raw data. It is robust to background noise and target scintillation effects and removes the problem of error accumulation inherent in peak-tracking method. The algorithm is applied to simulated ISAR data as well as actual ISAR data collected by X-band airborne radar. The results are presented in the paper for various scenarios.
机译:对于船舶的逆合成孔径雷达(ISAR)成像,唯一需要的运动是目标朝向雷达的旋转运动。雷达与目标之间的平移运动会严重扭曲图像,尤其是对于机载雷达对非合作式海军目标成像的情况。本文提出了一种鲁棒且计算效率高的算法,用于根据收集的数据本身估算雷达和目标之间的平移运动并对其进行补偿。该算法基于原始数据中的批处理配置文件相关性和相位补偿。它对背景噪声和目标闪烁效应具有鲁棒性,并消除了峰值跟踪方法固有的误差累积问题。该算法适用于模拟的ISAR数据以及X波段机载雷达收集的实际ISAR数据。结果在本文中针对各种场景进行了介绍。

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