风传感器测量精度对风系统性能的影响

C. Mademlis
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引用次数: 1

摘要

本文研究了风传感器测量精度对风能转换系统性能的影响。具体来说,考虑了安装在三叶片水平轴风力机机舱末端的风速和风向传感器。由于风力机叶片后尾迹的湍流,风向测量受到很大影响;然而,在涡轮后部的传感器可以获得令人满意的精确风速测量。此外,在风速测量中,由于转子旋转引起的任何差异都可以从转子气动模型中得到满意的精度,从而可以在处理所获得的数据时考虑到。因此,如果风速可以同时获得MPPT和偏航控制所需的信息,则可以将wcs驱动到令人满意的性能。相反,如果WECS的操作,特别是偏航控制是基于安装在机舱后部的传感器的直接风向测量,可能会导致与最佳性能的巨大差异。因此,采用精确的MPPT、优化发电机效率和可靠的偏航控制相结合的控制技术,可以使WECS产生最大的电能,并使切割风速向低风速范围减小。仿真结果验证了所提控制方案的有效性和操作性改进。
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Influence of the measurement accuracy of wind sensors on wind system performance
This paper investigates the influence of the measurement accuracy of the wind sensors on a wind energy conversion system (WECS) performance. Specifically, the wind speed and direction sensors installed at the end of the nacelle of a three blades horizontal axis wind turbine are considered. Due to the turbulence in the wake behind the wind turbine blades, wind direction measurement is highly affected; whereas, satisfactorily accurate measurement of the wind speed can be obtained from sensors at the rear part of the turbine. Moreover, any discrepancy caused by the rotating rotor at the wind speed measurement is known with satisfactory accuracy from the rotor aerodynamic model and thus, can be taken into consideration in the processing of the data obtained. Therefore, if the required information for both MPPT and yawing control is obtained by the wind speed, WECS can be driven to a satisfactory performance. On the contrary, if WECS operation and specifically yawing control is based on direct wind direction measurement with sensors installed at the rear part of the nacelle, may result to high discrepancies from the optimum performance. Thus, a combined control technique of accurate MPPT, optimization of the electrical generator efficiency and reliable yaw control can provide maximum electric energy production of the WECS and reduction of the cut-in wind speed towards the low wind speed range. Several simulation results are presented in order to demonstrate the effectiveness and operational improvement of the suggested control scheme.
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