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Nonlinear predictive generalized minimum variance LPV control of wind turbines

机译:风机的非线性预测广义最小方差LPV控制

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More advanced control strategies are needed for use with wind turbines, due to increases in size and performance requirements. This applies to both individual wind turbine controls and for the total coordinated controls for wind farms. The most successful advanced control method used in other industries is predictive control, which has the unique ability to handle hard constraints that limit system performance. However, wind turbine control systems are particularly difficult in being very nonlinear and dependent upon the external parameter variations which determine behaviour. Nonlinear controllers are often complicated to implement. The approach proposed here is to use one of the latest predictive control methods which can be used with linear parameter varying (LPV) models. These can approximate the behaviour of nonlinear wind turbines and provide a simpler control structure to implement. The work has demonstrated the feasibility and benefits that may be obtained.
机译:由于尺寸和性能要求的增加,需要用于风力涡轮机的更高级的控制策略。这既适用于单个风力发电机控制,也适用于风电场的总体协调控制。在其他行业中,最成功的高级控制方法是预测控制,它具有处理限制系统性能的硬约束的独特能力。然而,风力涡轮机控制系统在非常非线性和依赖于决定行为的外部参数变化方面特别困难。非线性控制器的实现通常很复杂。此处提出的方法是使用可以与线性参数变化(LPV)模型一起使用的最新预测控制方法之一。这些可以近似非线性风力涡轮机的行为,并提供一种更简单的控制结构来实施。这项工作证明了可能获得的可行性和益处。

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