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Power transition enhancement for variable-speed, variable-pitch wind turbines using model predictive control techniques

机译:使用模型预测控制技术的可变速度,可变音高风力涡轮机的功率转换增强

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The wind turbine operating area can be divided into several regions, depending on wind speed. Transition from fixed speed to variable speed wind turbines has been a significant element in the Wind energy technology improvements. This has allowed adapting the turbine rotational speed to the wind speed variations with the aim of optimizing the aerodynamic efficiency. In this paper, a multivariable control strategy based on model predictive control (MPC) techniques for the control of variable-speed variable-pitch wind turbines is introduced. The main advantages of the proposed controller are that it is easily adaptable for different conditions in addition to its very fast response. The proposed control strategy is described for the two operating regions of the wind turbine, i.e. both partial and full load regimes. Pitch angle and generator torque are controlled simultaneously to maximize the captured energy and smooth the power generated while reducing the pitch actuator activity. Simulation results show an excellent performance in improving the transition from power optimization to power limitation of the wind turbine.
机译:根据风速,风力涡轮机操作区域可分为几个区域。从固定速度转变为变速风力涡轮机的过渡是风能技术改进的重要元素。这使得使涡轮机转速适应风速变化,目的是优化空气动力学效率。本文介绍了一种基于模型预测控制(MPC)技术的多变量控制策略,用于控制变速变音促风轮机的控制。提出的控制器的主要优点是,除了非常快速的响应之外,还可以容易地适应不同的条件。所提出的控制策略描述了风力涡轮机的两个操作区域,即部分和全负荷制度。同时控制俯仰角和发电机扭矩,以最大化捕获的能量并平滑在减小俯仰致动器活动的同时产生的功率。仿真结果表明,改善从电源优化转换到风力涡轮机电力限制的优异性能。

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