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ℋ∞ controller design for closed-loop wake redirection

机译:closed∞控制器设计,用于闭环唤醒重定向

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The focus of control research in wind energy has shifted more and more from individual wind turbines to wind farms due to the potential efficiency improvement in the energy production. In this work, the wind farm control concept “wake redirection” is further investigated. More precisely, the concept of lidar-based closed-loop wake redirection is extended. A lidar-based wake center estimation is assumed and fed back to a controller, which steers the wake by employing the yaw actuator to a desired position. In this work, a ℋ controller design approach for lidar-based closed-loop wake redirection is investigated. The controller is designed using models that are obtained from the wind farm simulation tool WFSim. First, a model identification procedure is applied to derive the controller design models. Then, a ℋ controller design is conducted to obtain a controller for each identified model. The controllers are presented and the performances are analyzed. In a final step, a single controller is implemented in WFSim and closed-loop step simulations are conducted illustrating the desired behavior.
机译:由于能源生产的潜在效率提高,风能控制研究的重点已越来越多地从单个风力涡轮机转移到风力发电场。在这项工作中,将进一步研究风电场控制概念“唤醒重定向”。更准确地说,基于激光雷达的闭环唤醒重定向的概念得到了扩展。假定基于激光雷达的唤醒中心估计并将其反馈给控制器,该控制器通过使用偏航致动器将其引导至所需位置。在这项工作中,研究了基于激光雷达的闭环唤醒重定向的ℋ控制器设计方法。使用从风电场仿真工具WFSim获得的模型来设计控制器。首先,应用模型识别程序来导出控制器设计模型。然后,进行控制器设计,以获得每个识别模型的控制器。介绍了控制器并分析了性能。最后,在WFSim中实现单个控​​制器,并进行闭环步骤仿真,以说明所需的行为。

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