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Multiple model multiple-input multiple-output predictive control for variable speed variable pitch wind energy conversion systems

机译:变速变桨风能转换系统的多模型多输入多输出预测控制

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摘要

A multivariable control strategy based on model predictive control techniques for the control of variable-speed variable pitch wind energy conversion systems (WECSs) in the above-rated wind speed zone is proposed. Pitch angle and generator torque are controlled simultaneously to provide optimal regulation of the generated power and the generator speed while minimising torsional torque fluctuations in the drive train and pitch actuator activity. This has the effect of improving the power quality of the electrical power generated by the WECS and increasing the life time of the mechanical parts of the system. Furthermore, safe and acceptable operation of the system is guaranteed by incorporating most of the constraints on the physical variables of the WECS in the controller design. In order to cope with the non-linearity in the WECS and the continuous variation in the operating point, a multiple model predictive controller is suggested to provide near optimal performance within the whole operating region.
机译:提出了一种基于模型预测控制技术的多变量控制策略,用于在上述风速区控制变速变桨距风能转换系统(WECS)。同时控制桨距角和发电机扭矩,以提供对发电功率和发电机转速的最佳调节,同时最大程度地减小传动系和桨距致动器活动中的扭矩转矩波动。这具有改善由WECS产生的电能的电能质量并增加系统机械零件的使用寿命的效果。此外,通过在控制器设计中纳入WECS物理变量的大多数约束,可以保证系统的安全和可接受的运行。为了应对WECS中的非线性和工作点的连续变化,建议使用多模型预测控制器在整个工作区域内提供接近最佳的性能。

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  • 来源
    《Renewable Power Generation, IET》 |2011年第2期|p.124-136|共13页
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  • 作者单位

    Department of Electrical and Computer Engineering, University of Calgary, Canada;

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