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Micro-Doppler effect analysis and feature extraction in inverse synthetic aperture imaging LADAR imaging

机译:逆合成孔径成像LADAR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 describes the subtle micromotion features of a radar target and provides a new approach for feature extraction and auto radar target recognition. However, the microwave radar cannot provide enough resolution to detect the m-D effect of small targets and long distance targets. In order to obtain high range resolution for the extraction of subtle m-D signatures, inverse synthetic aperture imaging LADAR (ISAIL) is used here. Because the ISAIL uses a frequency modulation continuous wave signal, the m-D effect of ISAIL is different from the microwave radar. In this paper, the m-D effect of ISAIL is analyzed. The features of the m-D signatures in ISAIL are extracted by an improved Hough transform method associated with erosion and dilation operations in binary mathematical morphology. The simulations are given to validate the theoretical analyses and the proposed m-D extraction method. The experiment results show that the ISAIL can offer sufficient information of micromotions when the feature of motions is tiny.
机译:微多普勒(m-D)效应描述了雷达目标的微动特征,并为特征提取和自动雷达目标识别提供了一种新方法。但是,微波雷达无法提供足够的分辨率来检测小目标和长距离目标的m-D效应。为了获得用于提取微妙的m-D签名的高范围分辨率,此处使用了逆合成孔径成像LADAR(ISAIL)。因为ISAIL使用调频连续波信号,所以ISAIL的m-D效果不同于微波雷达。本文分析了ISAIL的m-D效应。 ISAIL中m-D签名的特征是通过与二进制数学形态学中的腐蚀和膨胀运算相关联的改进的Hough变换方法提取的。仿真结果验证了理论分析和提出的m-D提取方法的有效性。实验结果表明,当运动特征很小时,ISAIL可以提供足够的微运动信息。

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