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Micro-Doppler Effect Analysis and Feature Extraction in ISAR Imaging With Stepped-Frequency Chirp Signals

机译:步进频率线性调频信号的ISAR成像中的微多普勒效应分析和特征提取

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摘要

The micro-Doppler (m-D) effect induced by the rotating parts or vibrations of the target provides a new approach for target recognition. To obtain high range resolution for the extraction of the fine m-D signatures of an inverse synthetic aperture radar target, the stepped-frequency chirp signal (SFCS) is used to synthesize the ultrabroad bandwidth and reduce the requirement of sample rates. In this paper, the m-D effect in SFCS is analyzed. The analytical expressions of the m-D signatures, which are extracted by an improved Hough transform method associated with time-frequency analysis, are deduced on the range-slow-time plane. The implementation of the algorithm is presented, particularly in those extreme cases of rotating (vibrating) frequencies and radii. The simulations validate the theoretical formulation and robustness of the proposed m-D extraction method.
机译:目标的旋转部分或振动引起的微多普勒(m-D)效应为目标识别提供了一种新方法。为了获得高范围分辨率以提取逆合成孔径雷达目标的精细m-D签名,采用了步进频率线性调频信号(SFCS)来合成超宽带宽并降低对采样率的要求。本文分析了SFCS中的m-D效应。在范围慢时平面上推导了m-D签名的解析表达式,该表达式通过与时频分析相关的改进的霍夫变换方法提取。给出了算法的实现,特别是在旋转(振动)频率和半径的极端情况下。仿真结果验证了所提出的m-D提取方法的理论公式和鲁棒性。

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