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A method of maximum power point tracking for a variable speed wind turbine system

机译:变速风力涡轮机系统的最大功率点跟踪方法

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摘要

The paper presents a hill climbing method of maximum power point tracking control for a variable-speed wind turbine energy conversion system. The method does not require knowledge on the turbine parameters, power coefficient characteristics Cp(λ) nor air speed and density. The algorithm searches for the generator peak power by varying the angular speed and observing if it results in increment or decrement of the output power. The operation is repeated iteratively in the direction of the power growth until the peak power point dP/dω = 0 on the P(ω) curve is reached. The speed reference calculated by the algorithm is used to modify the generator reference torque. The main difficulty is that P(ω) curve and the peak power point vary with the wind speed so the algorithm may wrongly recognize current position on the power curve. Illustrative Matlab/Simulink simulations carried out for a 40 kW fixed pitch wind turbine data are presented to verify the presented algorithm.
机译:本文提出了一种用于变速风力发电机能量转换系统的最大功率点跟踪控制的爬坡方法。该方法不需要了解涡轮机参数,功率系数特性C \ n p\n(λ)或空气速度和密度。该算法通过改变角速度并观察其是否导致输出功率增加或减少来搜索发电机峰值功率。在功率增长的方向上反复重复该操作,直到达到P(ω)曲线上的峰值功率点dP /dω= 0为止。通过算法计算出的速度参考值用于修改发电机参考扭矩。主要困难在于P(ω)曲线和峰值功率点会随风速而变化,因此该算法可能会错误地识别功率曲线上的当前位置。介绍了对40 kW定距风力涡轮机数据进行的示例性Matlab / Simulink仿真,以验证所提出的算法。

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