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A novel trajectory-based active fault-tolerant control: Application to a Wind Turbine system

机译:一种基于轨迹的新型主动容错控制:在风力发电机系统中的应用

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摘要

In this paper, we present a real-time mechanism to accommodate faults occurring in a Wind Turbine (WT) system. The demonstrated mechanism lies under the taxonomy of Active Fault-tolerant Control (FTC) systems, namely the online redesign based approach. In the proposed approach, we do not use any a priori information about the model of the turbine in real-time. In fact, we use online measurements generated by the WT. Based on the given control specifications, and the observed measurement an occurred fault is accommodated by redesigning the controller online such that the WT generates rated power even under faulty conditions. Secondly, no explicit fault diagnosis (FD) module is used in this approach. As a result, issues of model uncertainty, false alarms, etc. associated with an integrated FD and controller reconfiguration approach to FTC systems are not experienced here.
机译:在本文中,我们提出了一种实时机制来适应风力涡轮机(WT)系统中发生的故障。所展示的机制属于主动容错控制(FTC)系统的分类法,即基于在线重新设计的方法。在提出的方法中,我们不使用有关涡轮机模型的任何先验信息。实际上,我们使用由WT生成的在线测量。基于给定的控制规范和观察到的测量结果,可以通过在线重新设计控制器来解决发生的故障,从而即使在故障条件下,WT也会产生额定功率。其次,这种方法不使用显式故障诊断(FD)模块。结果,这里没有遇到与FTC系统的集成FD和控制器重新配置方法相关的模型不确定性,错误警报等问题。

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