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首页> 外文期刊>Journal of solar energy engineering >Increased Power Capture by Rotor Speed-Dependent Yaw Control of Wind Turbines
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Increased Power Capture by Rotor Speed-Dependent Yaw Control of Wind Turbines

机译:通过风力发电机的转子速度偏航控制提高功率捕获

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When extracting energy from the wind using upwind, horizontal-axis wind turbines, a primary condition for ensuring maximum power yield is the ability to align the rotor axis with the dominating wind direction. Attempts have been made to improve the yaw alignment of wind turbines by applying advanced measurement technologies, such as light detection and ranging systems. However, application of advanced measurement equipment is associated with additional costs and increased system complexity. This study is focused on assessing the current performance of an operating turbine and exploring how the yaw alignment can be improved using measurements from the existing standard measurements system. By analyzing data from a case turbine and a corresponding meteorological mast, a correction scheme for the original yaw control system is suggested. The correction scheme is applied to the case turbine and tested. Results show that, with the correction scheme in place, the yaw alignment of the case turbine is improved and the yaw error is reduced to the vicinity of zero degrees. As a result of the improved yaw alignment, an increased power capture is observed for below-rated wind speeds.
机译:使用上风向水平轴风力涡轮机从风中提取能量时,确保最大功率输出的主要条件是使转子轴与主导风向对齐的能力。已经尝试通过应用诸如光检测和测距系统的先进测量技术来改善风力涡轮机的偏航对准。但是,高级测量设备的应用会带来额外的成本并增加系统的复杂性。这项研究的重点是评估运行中的涡轮机的当前性能,并探索如何使用现有标准测量系统中的测量值来改善偏航对准。通过分析来自涡轮机和相应气象桅杆的数据,提出了一种针对原始偏航控制系统的校正方案。该校正方案适用于涡轮机并经过了测试。结果表明,采用适当的校正方案后,壳体涡轮的偏航对准得到改善,偏航误差减小到零度附近。作为改进的偏航对准的结果,对于低于额定的风速,观察到增加的功率捕获。

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