随机扰动下风力发电机组传动系统的鲁棒容错控制

Xiaoxu Liu, Zhiwei Gao, A. Zhang, Yanling Li
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引用次数: 1

摘要

为了实现风能转换技术的可靠运行,本文开发了一种基于观测器的鲁棒容错控制技术,用于同时存在未知输入,故障和布朗摄动的风力涡轮机传动系统。结合增广法、未知输入观测器法和线性矩阵不等式等先进技术,鲁棒地估计了系统状态均值和所考虑的故障。在此基础上,实现了鲁棒容错控制策略,使系统轨迹收敛,并成功地消除了执行器和传感器故障的影响。控制增益的选择既保证了系统状态均值的收敛性,又弥补了相关故障引起的退化。通过线性矩阵不等式优化来确定增益,使得闭环系统是随机输入到状态稳定的,满足所需的鲁棒性能。所设计的基于观测器的容错控制c可以使整个系统在稳定状态下工作,并且可以对系统输出c进行补偿,从而在无故障情况下成功跟踪健康输出c。最后,将所提出的基于故障估计的容错控制方法应用于4.8 MW基准风力发电机组传动系系统,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust fault tolerant control for drive train in wind turbine systems with stochastic perturbations
To achieve reliable operation of wind energy conversion technology, this ρ aper develops a robust observer-based fault tolerant control technique for wind turbine drive train systems in presence of simultaneous unknown inputs, faults and Brownian perturbations. Integration of several advanced techniques, namely, augmented approach, unknown input observer method, and linear matrix inequaity, is employed to estimate the means of the system states and the considered faults robustly. Based on the estimates, robust fault tolerant control strategy is implemented to drive the system trajectory convergent and eliminate the effects of faults from both actuators and sensors successfully. The control gains are selected to guarantee the convergence of the means of system states and com pens ate for the de grad ation caused by concerned faults. The ob server gain is determined via a linear matrix inequality optimization such that the closed-loop system is stochastically input-to-state stable satisfying required robust performance. The desi gned observer-based fault tolerant control c an make the over all system work in a steady condition and the system outputs c an be compensated to successfully track the healthy outputs in fault-free c ases. Finally, the proposed fault estimation-based fault tolerant control method is applied to a drive train system of the 4.8 MW benchmark wind wind turbine to validate the effectiveness.
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