首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Integrated FDI/FTC approach for wind turbines using a LPV interval predictor subspace approach and virtual sensors/actuators
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Integrated FDI/FTC approach for wind turbines using a LPV interval predictor subspace approach and virtual sensors/actuators

机译:利用LPV间隔预测子空间方法和虚拟传感器/执行器的风力涡轮机集成FDI / FTC方法

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摘要

In order to keep wind turbines connected and in operation at all times despite the occurrence of some faults, advanced fault detection and accommodation schemes are required. To achieve this goal, this paper proposes to use the Linear Parameter Varying approach to design an Active Fault Tolerant Control for wind turbines. This Active Fault Tolerant Control is integrated with a Fault Detection and Isolation approach. Fault detection is based on a Linear Parameter Varying interval predictor approach while fault isolation is based on analysing the residual fault signatures. To include fault-tolerance in the control system (already available in the considered wind turbine case study based on the well known SAFEPROCESS benchmark), the information of the Fault Detection and Isolation approach block is exploited and it is used in the implementation of a virtual actuator and sensor scheme. The proposed Active Fault Tolerant Control is evaluated using fault scenarios which are proposed in the wind turbine benchmark to assess its performance. Results show the effectiveness of the proposed Active Fault Tolerant Control approach in faulty situation.
机译:为了保持风力涡轮机始终存在恒定的故障,尽管发生了一些故障,需要先进的故障检测和容纳方案。为实现这一目标,本文提出使用线性参数变化方法为风力涡轮机设计有源容错控制。这种有源容错控制与故障检测和隔离方法集成。故障检测基于线性参数变化间隔预测仪方法,而故障隔离是基于分析剩余故障签名。为了包括控制系统中的容错(基于众所周知的安全处理基准测试的被考虑的风力涡轮机盒式研究),利用故障检测和隔离方法块的信息,并用于实现虚拟的实现执行器和传感器方案。使用在风力涡轮机基准测试中提出的故障方案来评估所提出的主动容错控制,以评估其性能。结果表明,提出的主动容错控制方法有效果。

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