On-line redesign based approach for fault accommodation in wind turbines

Tushar Jain, J. Yamé, D. Sauter
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引用次数: 1

Abstract

This paper presents a real-time mechanism to tolerate faults occurring in a Wind Turbine (WT) system. This system is a FAST coded simulator designed by the U.S. National Renewable Energy Laboratory's. The demonstrated mechanism lies under the taxonomy of Active Fault-Tolerant Control (AFTC) systems, namely 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 measurements an occurring fault is accommodated by reconfiguring the controller such that the WT generates the rated power even under faulty conditions. Secondly, no use of an explicit fault-diagnosis module is seen in this approach. Therefore, the fault accommodation delay in the proposed AFTC system is smaller than the delay as experienced in the traditional structure of AFTC systems.
基于在线再设计的风电机组故障调节方法
提出了一种风力发电系统故障实时容错机制。该系统是由美国国家可再生能源实验室设计的FAST编码模拟器。所演示的机制属于主动容错控制(AFTC)系统的分类,即基于在线重新设计的方法。在提出的方法中,我们不使用任何关于涡轮机模型的实时先验信息。事实上,我们使用由小波变换生成的在线测量。基于给定的控制规范,通过重新配置控制器来适应观察到的故障测量,使小波变换即使在故障条件下也能产生额定功率。其次,在这种方法中没有使用显式故障诊断模块。因此,本文提出的AFTC系统的容错延迟小于传统AFTC系统结构的容错延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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