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Combined Feedback–Feedforward Control of Wind Turbines Using State-Constrained Model Predictive Control

机译:基于状态约束模型预测控制的风力发电机组合反馈-前馈控制

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摘要

An application of model predictive control (MPC) to the wind turbine collective pitch and torque control problem in full-load operation is presented. The applied controller is able to include upstream wind speed information, e.g., from light detection and ranging measurements. Furthermore, a method is presented to include constraints on the turbine states in the problem formulation, such as on rotor speed, even in the presence of unmeasured disturbances. In a simulation study, the effects of both preview control and state constraints are evaluated for three different scenarios: normal operation, gusts, and grid-loss load cases. It is found that preview control provides significant benefits in normal operation and under gust conditions. It is further found that including state constraints in the MPC formulation can be used to avoid unnecessary shutdowns due to the violation of the overspeed limit or to control the turbine effectively when the turbine needs to run at a reduced level of generator torque.
机译:提出了模型预测控制(MPC)在满负荷运行中风机总螺距和转矩控制问题中的应用。所应用的控制器能够包括例如来自光检测和测距测量的上游风速信息。此外,提出了一种方法,即使在存在无法测量的干扰的情况下,也包括在问题公式中包括对涡轮机状态的限制,例如对转子速度的限制。在模拟研究中,针对三种不同的情况评估了预览控制和状态约束的影响:正常运行,阵风和电网损耗情况。发现预览控制在正常操作和阵风条件下具有明显的优势。进一步发现,可以在MPC公式中包括状态约束,以避免由于超速限制而引起的不必要停机,或者在涡轮机需要以降低的发电机转矩水平运行时有效地控制涡轮机。

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