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Fault tolerant control of wind turbines with simultaneous actuator and sensor faults using adaptive time delay control

机译:具有自适应时间延迟控制的同时执行器和传感器故障的风力涡轮机的容错控制

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摘要

In this paper, a new Active Fault Tolerant Control (AFTC) is proposed using adaptive fractional-based Terminal Back-stepping Sliding Mode (TBSM) control strategy for pitch angle control of a variable speed wind turbine in the presence of actuator and sensor faults. In order to detect, isolate and accommodate the faults, Time Delay Estimation (TDE) is used as an online fault estimation algorithm. To eliminate the chattering of conventional sliding mode, supper twisting sliding mode algorithm is applied, which also ensures finite time convergence and high precision. Moreover, wind speed profiles are generated using TurbSim, and the controller is implemented on a simplified two-mass wind turbine model. To verify the validity of the proposed scheme, the simulations are also performed in FAST environment, and finally, the simulation results are presented which reveal the effectiveness of the proposed controller in the presence of faults, uncertainties and turbulent wind fields. (c) 2021 Elsevier Ltd. All rights reserved.
机译:在本文中,使用用于在致动器和传感器故障的情况下,使用自适应分数基于基于基于终端的终端回转滑动模式(TBSM)控制策略来提出新的积极容错控制(AFTC)。为了检测,隔离和容纳故障,时间延迟估计(TDE)用作在线故障估计算法。为了消除常规滑动模式的抖动,应用了晚餐扭转滑动模式算法,这也确保了有限的时间收敛和高精度。此外,使用TURBSIM生成风速型材,并且控制器在简化的两质量风力涡轮机模型上实现。为了验证所提出的方案的有效性,仿真也在快速环境中进行,最后,提出了模拟结果,其揭示了所提出的控制器在存在故障,不确定性和湍流风场的存在中的有效性。 (c)2021 elestvier有限公司保留所有权利。

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