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首页> 外文期刊>Current Organic Synthesis >Synchrosqueezing Phase Analysis on Micro-Doppler Parameters for Small UAVs Identification With Multichannel Radar
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Synchrosqueezing Phase Analysis on Micro-Doppler Parameters for Small UAVs Identification With Multichannel Radar

机译:多通道雷达小无人机识别微多普勒参数的同步阶段分析

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摘要

Micro-Doppler (m-D) effect, induced by the rotation of rotor blades, introduces significant characteristics to identify small unmanned aerial vehicles (UAVs) in remote surveillance. As opposed to the Doppler signal induced by the translation, m-D signal is comparatively weak and consists of multiple frequency components. In this letter, we propose synchrosqueezing phase analysis (SPA) for the extraction of rotation signal with the multichannel radar. Based on the proposed signal model, this new method not only enables multivariate denoising and sharpening time-frequency (TF) representation, but also concentrates on the energy of rotation signal for the separation. Simulations are employed to demonstrate the validity of the proposed method in extracting the m-D features. Applications on field data further prove the potential in delineating m-D characteristics with higher precision and render that this technique is promising for the identification of small UAVs.
机译:通过转子叶片旋转引起的微多普勒(M-D)效应引入了识别远程监测中的小无人驾驶飞行器(无人机)的重要特征。 与通过翻译引起的多普勒信号相反,M-D信号相对较弱并且由多个频率分量组成。 在这封信中,我们提出了与多通道雷达提取旋转信号的同步相位分析(SPA)。 基于所提出的信号模型,这种新方法不仅能够实现多变量的去噪和锐化时频(TF)表示,而且还集中在分离的旋转信号的能量上。 使用模拟来展示提取M-D特征方面提出的方法的有效性。 现场数据的应用进一步证明了具有更高精度的划定M-D特性的潜力,并呈现该技术的识别是对小无人机的识别。

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