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Development of wireless laser blade deflection monitoring system for mobile wind turbine management host

机译:移动式风机管理主机无线激光叶片挠度监测系统的开发

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This study proposes a wireless laser displacement sensor system for in situ deflection monitoring of wind turbine blades. This system consists of a tower-installed laser displacement sensor system composed of a laser displacement sensor head, controller, Zigbee transmitter, and analog-to-digital converter module, combined with a mobile host that includes a Zigbee receiver and a laptop. In contrast to the approach of blade sensor installation, the laser displacement sensor system is installed in the tower to enable noncontact blade displacement monitoring. The concepts of direct noncontact remote sensing and actuation from the tower and remote power delivery from the tower to blade-installed sensors and actuators will enable various approaches for wind turbine structural health monitoring. The proposed system can easily identify problems related to deflection. The size of wind blades increases with energy demands. Due to the large size of wind turbines, current wind turbines are installed very high above ground level. It is impractical to monitor the results from laser displacement sensor through wired connection in these cases. Hence, wired connections of laser displacement sensors to base monitoring stations must be replaced with a wireless solution. This wireless solution is achieved using Zigbee technology. The output from the laser displacement sensor is fed to a microcontroller, which acts as an analog-to-digital converter. The output from the microcontroller is connected to the Zigbee transceiver module, which transmits the data, and at the other end, the Zigbee reads the data and displays it on a PC, from which users can monitor the condition of the wind blades.
机译:这项研究提出了一种无线激光位移传感器系统,用于风轮机叶片的原位偏转监测。该系统由塔顶安装的激光位移传感器系统组成,该系统由激光位移传感器头,控制器,Zigbee发射器和模数转换器模块组成,并与包括Zigbee接收器和笔记本电脑的移动主机结合在一起。与刀片传感器安装方法相反,激光位移传感器系统安装在塔架中,以实现非接触式刀片位移监测。从塔架直接进行非接触式遥感和致动,以及从塔架向叶片安装的传感器和执行器进行远程供电的概念将为风力涡轮机结构健康状况监测提供多种方法。所提出的系统可以容易地识别与挠曲有关的问题。叶片的尺寸随着能量需求而增加。由于风力涡轮机的大尺寸,当前的风力涡轮机被安装在高于地面的高度上。在这种情况下,通过有线连接监视激光位移传感器的结果是不切实际的。因此,必须将激光位移传感器与基站监控站的有线连接替换为无线解决方案。该无线解决方案是使用Zigbee技术实现的。激光位移传感器的输出被馈送到微控制器,该微控制器充当模数转换器。微控制器的输出连接到Zigbee收发器模块,后者传输数据,在另一端,Zigbee读取数据并将其显示在PC上,用户可以从PC上监视风叶的状况。

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