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首页> 外文期刊>Complexity >Optimal Fault Tolerant Control of Large-Scale Wind Turbines in the Case of the Pitch Actuator Partial Faults
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Optimal Fault Tolerant Control of Large-Scale Wind Turbines in the Case of the Pitch Actuator Partial Faults

机译:在俯仰执行器部分断层的情况下大型风力涡轮机的最佳容错控制

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In this paper, an adaptive fault tolerant control strategy is proposed to deal with the three pitch actuator faults in the large-scale wind turbines. Firstly, a simultaneous state and fault estimation was performed through a suitable LMI (linear matrix inequality) based optimal strategy. Hereafter, the new control law is designed using the previously estimated fault information. The actuator efficiency estimator uses as design parameters, respectively, the performance index γ against the wind and the learning rate Ξ. of the fault estimation algorithm. The study shows that the choice of the previous two parameters impacts the response time of the fault estimation and the correlation of the tracking error with the wind. The aim is to choose a small fault estimation response time while keeping a weak correlation between the tracking error and the wind turbulence noise. Finally, a tuning strategy is elaborated to choose the suitable γ and Ξ to match the reconfiguration objective.
机译:本文提出了一种自适应容错控制策略,以处理大规模风力涡轮机中的三个俯仰执行器故障。首先,通过基于合适的LMI(线性矩阵不等式)的最优策略来执行同时状态和故障估计。此后,使用先前估计的故障信息设计了新的控制法。执行器效率估计器分别用作设计参数,性能指数γ对抗风和学习率ξ。故障估计算法。该研究表明,前两个参数的选择会影响故障估计的响应时间和跟踪误差与风的相关性。目的是选择小故障估计响应时间,同时保持跟踪误差与风湍流噪声之间的弱相关性。最后,详细说明了调整策略选择合适的γ和ξ以匹配重新配置目标。

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