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Design and implementation of partial offline fuzzy model-predictive pitch controller for large-scale wind-turbines

机译:大型风力发电机部分离线模糊模型预测桨距控制器的设计与实现

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In the variable rotor speed and variable blade pitch wind-turbines system, the pitch controller is crucial in the high wind speed range to adjust the generator speed so as to produce the rated power. The main challenges in designing the pitch controller are the wind turbine's nonlinearities, constraints on pitch-angle, the variations in wind-speed, and the unstructured model dynamics. From this perspective, a new pitch controller is proposed by employing partial offline quasi-min-max fuzzy model-predictive control to investigate the variable-speed wind turbine performance. Based on the fuzzy modeling, the online optimization problem is simplified as a partial offline optimization problem (offline design and online synthesis). The key advantage of this controller is the guaranteed stability with actuator constraints using LMI constraints and less computational burden. Also, this controller is compared with standard gain scheduled-PI (proportional integral) controller, which has been utilized profusely in the wind-turbine industry. Furthermore, a typical 5 MW benchmark wind-turbine is employed to validate the results from the nonlinear mathematical model. Several case studies are made to prove the proposed controller effectiveness. The results show the superiority of the proposed controller over the gain scheduled-PI controller and two other advanced control techniques. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在可变转子速度和可变叶片变桨距风力涡轮机系统中,变桨控制器在高风速范围内至关重要,以调节发电机转速,从而产生额定功率。设计桨距控制器的主要挑战是风力涡轮机的非线性,桨距角的约束,风速的变化以及非结构化模型动力学。从这个角度出发,提出了一种新的变桨控制器,它采用部分离线的拟最小-最大模糊模型预测控制来研究变速风力发电机的性能。基于模糊建模,在线优化问题被简化为部分离线优化问题(离线设计和在线综合)。该控制器的主要优点是使用LMI约束和执行器约束确保了稳定性,并减少了计算负担。另外,将该控制器与标准增益预定PI(比例积分)控制器进行了比较,该标准控制器已在风力涡轮机行业中得到广泛使用。此外,采用典型的5兆瓦基准风力发电机来验证非线性数学模型的结果。进行了几个案例研究,以证明所提出的控制器的有效性。结果表明,所提出的控制器优于增益预定PI控制器和其他两种先进的控制技术。 (C)2019 Elsevier Ltd.保留所有权利。

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