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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Separation of target rigid body and micro-doppler effects in ISAR imaging
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Separation of target rigid body and micro-doppler effects in ISAR imaging

机译:ISAR成像中目标刚体的分离和微多普勒效应

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Micro-Doppler (m-D) effect is caused by moving parts of the radar target. It can cover rigid parts of a target and degrade the inverse synthetic aperture radar (ISAR) image. Separation of the patterns caused by stationary parts of the target from those caused by moving (rotating or vibrating) parts is the topic of this paper. Two techniques for separation of the rigid part from the rotating parts have been proposed. The first technique is based on time-frequency (TF) representation with sliding window and order statistics techniques. The first step in this technique is recognition of rigid parts in the range/cross-range plane. In the second step, reviewed TF representation and order statistics setup are employed to obtain signals caused by moving parts. The second technique can be applied in the case of very emphatic m-D effect. In the first step the rotating parts are recognized, based on the inverse Radon transform (RT). After masking these patterns, a radar image with the rigid body reflection can be obtained. The proposed methods are illustrated by examples
机译:微多普勒(m-D)效应是由雷达目标的移动部件引起的。它可以覆盖目标的刚性部分并降低合成孔径孔径雷达(ISAR)的反像。本文的主题是将目标固定部分引起的图案与移动(旋转或振动)部分引起的图案分开。已经提出了两种用于将刚性部件与旋转部件分离的技术。第一种技术基于具有滑动窗口和顺序统计技术的时频(TF)表示。该技术的第一步是识别范围/跨范围平面中的刚性零件。在第二步中,使用审阅的TF表示和顺序统计设置来获取由运动部件引起的信号。第二种技术可以用于非常强调m-D效果的情况。第一步,根据逆Radon变换(RT)识别旋转零件。遮盖这些图案后,可以获得具有刚体反射的雷达图像。实例说明了所提出的方法

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