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

机译:基于多普勒雷达的工业型风力涡轮机的时频信号短距离采集

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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:大型机械结构的基于非接触雷达的监视目前正受到RF /微波界的广泛关注。特别地,可以相干地利用多普勒雷达来提取工业型风力涡轮机的频谱图(即时间​​多普勒图)。这项工作进行了对应于一个50米高的Vestas风力涡轮机的短程实验,该风力涡轮机由两个分别在5.8 GHz和24 GHz下运行的定制设计的正交雷达原型照亮。可以观察到,所获得的实验性雷达信号(由闪光和准正弦形晕圈形成)表现出不同的特性,具体取决于雷达传感器的采集几何形状和工作频率。这些功能在将来可能会导致基于雷达的非接触式监控解决方案,以解决工业型风力涡轮机的结构健康问题。

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