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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Micro-Doppler Removal in the Radar Imaging Analysis
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Micro-Doppler Removal in the Radar Imaging Analysis

机译:雷达成像分析中的微多普勒去除

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摘要

The micro-Doppler (m-D) effect is caused by fast moving reflectors. This effect may significantly decrease the readability of the inverse synthetic aperture radar/synthetic aperture radar (ISAR/SAR) images. An L-statistics-based method for m-D effects removal is proposed. The L-statistics approach is performed on the spectrogram, while the rigid body signal synthesis is done in the complex time-frequency (TF) domain. The proposed method is very simple to use and produces better results than the other TF-based approaches. In addition to being capable of separating the rigid body and the m-D parts, this approach is robust to the noise influence. It may also separate close rigid body points, which are not separated in the original radar image. In the numerical implementation of this approach for radar imaging, the computational efficiency is further improved by using two thresholds. The first threshold determines whether there is a target signal in a range cell, while the second threshold determines whether there are m-D effects in this range cell. These thresholds could significantly decrease the computation time in real-time applications. The theory is illustrated by examples.
机译:微多普勒(m-D)效应是由快速移动的反射镜引起的。这种影响可能会大大降低反向合成孔径雷达/合成孔径雷达(ISAR / SAR)图像的可读性。提出了一种基于L统计的m-D效果去除方法。 L统计方法是在频谱图上执行的,而刚体信号合成是在复杂的时频(TF)域中完成的。所提出的方法使用起来非常简单,并且比其他基于TF的方法产生更好的结果。除了能够分离刚体和m-D零件之外,此方法还对噪声影响具有鲁棒性。它还可以分离出在原始雷达图像中没有分离的紧密的刚体点。在此方法用于雷达成像的数值实现中,通过使用两个阈值进一步提高了计算效率。第一阈值确定在测距单元中是否存在目标信号,而第二阈值确定在此测距单元中是否存在m-D效应。这些阈值可以大大减少实时应用程序中的计算时间。实例说明了该理论。

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