Individual pitch control of doubly-fed wind turbine generator based on blade element theory

F. Gao, Peng Guo
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引用次数: 1

Abstract

The premise of collective pitch control is that wind speed is the same in the rotor plane, but wind shear and tower shadow makes wind speed in the rotor rotating plane changing differently. It affects the corrective pitch control greatly and increases the fatigue load. This paper model 1.5MW doubly-fed WTG (wind turbine generator) for individual pitch control, and analyze the main reason of periodic load fluctuation. Then individual pitch control based on blade element theory was researched combining the actual of the load is difficult to measure. Pitch angle was distributed by weight coefficient to realize individual pitch control. The weight coefficient was computed according to the wind speed with consideration of trailing vortex, wind shear and tower shadow. Simulations indicate that the proposed individual pitch control method not only meet the basic power control request but also reduce fluctuation of load, so it can solve the problem of fatigue load and prolong the lifetime in process of development to large-scale WTG.
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基于叶片单元理论的双馈风力发电机个体桨距控制
集体螺距控制的前提是转子平面内风速相同,但风切变和塔影使得转子旋转平面内风速变化不同。这极大地影响了校正螺距控制,增加了疲劳载荷。本文对1.5MW双馈风力发电机组进行了单节距控制建模,分析了机组负荷周期性波动的主要原因。然后结合载荷难以测量的实际情况,研究了基于叶片单元理论的独立节距控制。采用权重系数分配俯仰角,实现个体俯仰控制。考虑尾涡、风切变和塔影等因素,根据风速计算权重系数。仿真结果表明,所提出的单节距控制方法不仅满足了基本的功率控制要求,而且减小了负载的波动,从而在向大型WTG发展的过程中解决了疲劳载荷问题,延长了寿命。
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