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Fault-tolerant control of wind turbines with hydrostatic transmission using Takagi-Sugeno and sliding mode techniques

机译:使用Takagi-Sugeno和滑模技术的静液压传动风力涡轮机的容错控制

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摘要

In this paper, a Takagi-Sugeno Sliding Mode Observer for actuator fault diagnosis and fault-tolerant control scheme of wind turbines with hydrostatic transmission are presented. It will be shown that sliding mode techniques have the advantages that several actuator faults of the wind turbine drive train can be simultaneously reconstructed with one and the same observer and directly applied for fault compensation. Furthermore, a simple compensation approach is implemented by subtracting the reconstructed faults obtained from the (faulty) inputs. These corrected inputs act on the system as virtual actuators, such that the originally designed controller for the nominal, i.e. fault-free situation, can still be used. The fault reconstruction and fault tolerant control strategy are tested in simulations with several faults of different types. (C) 2015 International Federation of Automatic Control. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种Takagi-Sugeno滑模观测器,用于静液压传动风力发电机的执行器故障诊断和容错控制方案。将显示出,滑模技术的优点在于,可以由一个和同一观察者同时重建风力涡轮机传动系统的多个致动器故障,并将其直接应用于故障补偿。此外,通过减去从(故障)输入中获得的重构故障,可以实现一种简单的补偿方法。这些校正后的输入在系统上充当虚拟执行器,因此仍可以使用最初为标称(即无故障)情况设计的控制器。在具有几种不同类型故障的仿真中测试了故障重构和容错控制策略。 (C)2015年国际自动控制联合会。由Elsevier Ltd.出版。保留所有权利。

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