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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Model Predictive Control Using Multi-Step Prediction Model for Electrical Yaw System of Horizontal-Axis Wind Turbines
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Model Predictive Control Using Multi-Step Prediction Model for Electrical Yaw System of Horizontal-Axis Wind Turbines

机译:水平轴风力发电机电力偏航系统的多步预测模型预测控制

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摘要

This study presents an advanced model predictive control (MPC) using multistep prediction model for the electrical motor-based yaw system of an industrial wind turbine. The proposed method introduces a finite control set under constraints for the demanded yaw rate, predicts the multistep yaw error using the control set element and the prediction wind directions, and employs an exhaustive search method to search the control output candidate giving the minimal value of the objective function. As the objective function is designed for a joint power and actuator usage optimization, the weighting factor in the objective function is optimally selected using the Pareto curve-based tuning method. Finally, the proposed method is demonstrated by simulation tests using Bladed software and the achievable performance is investigated among six MPC controllers with different prediction steps. Investigation results show that, along with the extended prediction horizon, the power production is improved while maintaining the same yaw actuator usage. Meanwhile, the MPC-based yaw controllers have certain effects on the fatigue loads of the tower and yaw bearing, while their effects on the blade root and hub are small. Besides, it is observed that the potential performance achieved by the MPC controllers is obviously affected by the wind conditions.
机译:这项研究针对工业风力涡轮机的基于电动机的偏航系统,提出了一种使用多步预测模型的高级模型预测控制(MPC)。所提出的方法在要求的偏航率约束下引入了一个有限的控制集,使用控制集元素和预测风向来预测多步偏航误差,并采用详尽的搜索方法来搜索给出最小值的控制输出候选。目标函数。由于目标函数是为优化联合动力和执行器使用而设计的,因此使用基于帕累托曲线的调整方法可以最佳地选择目标函数中的加权因子。最后,通过使用Bladed软件进行的仿真测试证明了该方法的有效性,并研究了六个具有不同预测步骤的MPC控制器之间可达到的性能。调查结果表明,随着预测范围的扩大,在保持相同偏航执行器使用量的同时,提高了发电量。同时,基于MPC的偏航控制器对塔架和偏航轴承的疲劳载荷有一定影响,而对叶片根部和轮毂的影响很小。此外,可以观察到,MPC控制器实现的潜在性能明显受到风况的影响。

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