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Doppler-radar-based short-range acquisitions of time-frequency signatures from an industrial-type wind turbine

机译:基于多普勒雷达的基于时间频率特征从工业型风力涡轮机的短程采集

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Non-contact radar-based monitoring of large mechanical constructions is currently gaining much attention from the RF/microwave community. In particular, Doppler radars can be coherently exploited to extract spectrograms—i.e., time-Doppler maps—of industrial-type wind turbines. This work conducts short-range experiments corresponding to a 50-m-height Vestas wind turbine illuminated by two custom-designed quadrature radar prototypes operating at 5.8 and 24 GHz, respectively. It is observed that the obtained experimental radar signatures—that are shaped by flashes and quasi-sinusoidal halos—exhibit distinct characteristics depending on the acquisition geometry and the operation frequency of the radar sensor. These features might lead in the future to a radar-based non-contact monitoring solution of the structural health of industrial-type wind turbines.
机译:基于非接触雷达的大型机械结构监测目前正在从RF /微波群落中获得很多关注。特别地,多普勒雷达可以合持地利用以提取光谱图-1.,是工业型风力涡轮机的时间多普勒图。该工作分别对应于由5.8和24 GHz的两种定制的正交雷达原型照射的50米高度的风力发电机相对应的短程实验。观察到所获得的实验雷达签名 - 通过闪光和准正弦晕 - 表现出不同的特性,这取决于雷达传感器的采集几何形状和操作频率。这些功能可能会导致未来的基于雷达的非接触式监控解决方案,其工业型风力涡轮机的结构健康。

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