Wind Speed Estimation for PMSG-Based WECS under Power Limit Control

Wei Chen, Wenbin Yang, Qing Chen, Jingyi Li, H. Geng
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Abstract

Availability of real-time wind speed information is important for the control of the wind energy conversion system (WECS). Conventionally, the wind speed estimation can be achieved by considering the motion equation of rotator of wind turbine. However, under the power limit control, the rotor speed easily reaches the maximum, making the wind speed estimation more difficult. In this paper, an effective estimation method of wind speed for the PMSG-based WECS under the power limit control is proposed, which approximates the nonlinear relation between the pitch angle and wind speed in the case of rotor speed reaching the maximum value. The proposed method adopts the polynomial function to describe the numerically solved relation between the pitch angle and wind speed, with considering different power limit references. As a result, the pitch angle is utilized to estimate the real wind speed when the rotor speed reaches the maximum. Finally, case studies are carried out to validate the proposed method.
功率限制下基于pmsg的wcs风速估计
实时风速信息的获取对风能转换系统的控制具有重要意义。通常,风速的估计是通过考虑风力机转子的运动方程来实现的。然而,在功率限制控制下,转子转速容易达到最大值,使得风速估算更加困难。本文提出了一种有效的功率限制控制下基于永磁转子转子控制系统的风速估计方法,该方法近似于转子转速达到最大值时的俯仰角与风速之间的非线性关系。该方法采用多项式函数来描述数值求解的俯仰角与风速之间的关系,并考虑不同的功率极限参考。因此,利用俯仰角来估计转子转速达到最大时的实际风速。最后,通过实例验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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