An Overview on Fault Diagnosis, Prognosis and Resilient Control for Wind Turbine Systems

风力发电 涡轮机 可靠性工程 断层(地质) 灾难性故障 可靠性(半导体) 损害赔偿 工程类 汽车工程 计算机科学 电气工程 机械工程 功率(物理) 地质学 物理 地震学 热力学 法学 量子力学 政治学
作者
Zhiwei Gao,Xiaoxu Liu
出处
期刊:Processes [Multidisciplinary Digital Publishing Institute]
卷期号:9 (2): 300-300 被引量:236
标识
DOI:10.3390/pr9020300
摘要

Wind energy is contributing to more and more portions in the world energy market. However, one deterrent to even greater investment in wind energy is the considerable failure rate of turbines. In particular, large wind turbines are expensive, with less tolerance for system performance degradations, unscheduled system shut downs, and even system damages caused by various malfunctions or faults occurring in system components such as rotor blades, hydraulic systems, generator, electronic control units, electric systems, sensors, and so forth. As a result, there is a high demand to improve the operation reliability, availability, and productivity of wind turbine systems. It is thus paramount to detect and identify any kinds of abnormalities as early as possible, predict potential faults and the remaining useful life of the components, and implement resilient control and management for minimizing performance degradation and economic cost, and avoiding dangerous situations. During the last 20 years, interesting and intensive research results were reported on fault diagnosis, prognosis, and resilient control techniques for wind turbine systems. This paper aims to provide a state-of-the-art overview on the existing fault diagnosis, prognosis, and resilient control methods and techniques for wind turbine systems, with particular attention on the results reported during the last decade. Finally, an overlook on the future development of the fault diagnosis, prognosis, and resilient control techniques for wind turbine systems is presented.
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