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Monitoring the Rotation Status of Wind Turbine Blades Using High-speed Camera System

机译:使用高速摄像系统监控风力涡轮机叶片的旋转状态

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The measurement of the rotating object is of great significance in engineering applications. In this study, a high-speed dual camera system based on 3D digital image correlation has been developed in order to monitor the rotation status of the wind turbine blades. The system allows sequential images acquired at a rate of 500 frames per second (fps). An improved Newton-Raphson algorithm has been proposed which enables detection movement including large rotation and translation in subpixel precision. The simulation experiments showed that this algorithm is robust to identify the movement if the rotation angle is less than 16 degrees between the adjacent images. The subpixel precision is equivalent to the normal NR algorithm, i.e.0.01 pixels in displacement. As a laboratory research, the high speed camera system was used to measure the movement of the wind turbine model which was driven by an electric fan. In the experiment, the image acquisition rate was set at 387 fps and the cameras were calibrated according to Zhang's method. The blade was coated with randomly distributed speckles and 7 locations in the blade along the radial direction were selected. The displacement components of these 7 locations were measured with the proposed method. Conclusion is drawn that the proposed DIC algorithm is suitable for large rotation detection, and the high-speed dual camera system is a promising, economic method in health diagnose of wind turbine blades.
机译:旋转物体的测量在工程应用中具有重要意义。在这项研究中,已经开发了基于3D数字图像相关性的高速双摄像头系统,以监控风力涡轮机叶片的旋转状态。该系统允许以每秒500帧(fps)的速率采集连续图像。提出了一种改进的Newton-Raphson算法,该算法可以实现包括子像素精度的大旋转和平移在内的检测运动。仿真实验表明,如果相邻图像之间的旋转角度小于16度,则该算法对于识别运动具有鲁棒性。亚像素精度等同于常规NR算法,即位移为0.01像素。作为实验室研究,高速摄像机系统用于测量由电风扇驱动的风力涡轮机模型的运动。在实验中,将图像采集速率设置为387 fps,并根据Zhang的方法对相机进行了校准。叶片上涂有随机分布的斑点,并在叶片上沿径向选择了7个位置。用建议的方法测量了这7个位置的位移分量。结论表明,本文提出的DIC算法适用于大旋转检测,而高速双摄像头系统是一种有前途的,经济的风力涡轮机叶片健康诊断方法。

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