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PI controller design of a wind turbine: evaluation of the pole-placement method and tuning using constrained optimization

机译:风力涡轮机的pI控制器设计:极点配置方法的评估和使用约束优化的调整

摘要

PI/PID controllers are the most common wind turbine controllers. Normally a first tuning is obtained using methods such as pole-placement or Ziegler-Nichols and then extensive aeroelastic simulations are used to obtain the best tuning in terms of regulation of the outputs and reduction of the loads. In the traditional tuning approaches, the properties of different open loop and closed loop transfer functions of the system are not normally considered. In this paper, an assessment of the pole-placement tuning method is presented based on robustness measures. Then a constrained optimization setup is suggested to automatically tune the wind turbine controller subject to robustness constraints. The properties of the system such as the maximum sensitivity and complementary sensitivity functions (Ms and Mt), along with some of the responses of the system, are used to investigate the controller performance and formulate the optimization problem. The cost function is the integral absolute error (IAE) of the rotational speed from a disturbance modeled as a step in wind speed. Linearized model of the DTU 10-MW reference wind turbine is obtained using HAWCStab2. Thereafter, the model is reduced with model order reduction. The trade-off curves are given to assess the tunings of the poles- placement method and a constrained optimization problem is solved to find the best tuning.
机译:PI / PID控制器是最常见的风力涡轮机控制器。通常,首先使用极点放置或Ziegler-Nichols等方法获得调整,然后使用大量的气动弹性仿真来获得最佳的调整,以调节输出功率并降低负载。在传统的调整方法中,通常不考虑系统的不同开环和闭环传递函数的属性。在本文中,提出了一种基于鲁棒性测度的极点布置调整方法的评估方法。然后,建议使用受约束的优化设置来自动调整风力发电机控制器的鲁棒性。系统的属性,例如最大灵敏度和互补灵敏度函数(Ms和Mt),以及系统的某些响应,用于研究控制器性能并提出优化问题。代价函数是根据风速阶跃建模的扰动引起的转速的积分绝对误差(IAE)。使用HAWCStab2获得DTU 10兆瓦参考风力涡轮机的线性化模型。此后,通过模型阶数减少来简化模型。给出了折衷曲线以评估极点放置方法的调整,并解决了约束优化问题以找到最佳调整。

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