Abst'/> Real-time power switch fault diagnosis and fault-tolerant operation in a DFIG-based wind energy system
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Real-time power switch fault diagnosis and fault-tolerant operation in a DFIG-based wind energy system

机译:基于DFIG的风能系统中的实时电源开关故障诊断和容错操作

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AbstractAs wind energy production increases, reliability and fault-tolerant operation capability of wind energy systems are becoming more important. Modern wind energy production systems use power electronic converters which are unfortunately proved to be one of their most fragile parts and responsible for most of the system downtime. Real-time fault monitoring, fault diagnosis and proper system reconfiguration in these converters are therefore mandatory for fault-tolerant operation of the converter and the whole system. In this paper, a comprehensive fault-tolerant power electronics interface for wind energy systems with doubly-fed induction generators is presented and validated. The same power production capability will be guaranteed. The proposed solution also includes a robust and very fast open-circuit switch fault diagnosis algorithm, which is not sensitive to the operation conditions and is therefore suitable for this application. Simulation, Hardware in the Loop validation and experimental tests are carried out to demonstrate the effectiveness of the proposed approach.HighlightsA real-time power switch fault diagnosis for a DFIG-based wind energy system is proposed.Fault-tolerant operation is performed under open circuit switch fault.The effectiveness of the proposed approach is validated by Hardware in the Loop and experimental validations.
机译: 摘要 随着风能产量的增加,风能系统的可靠性和容错运行能力变得越来越重要。现代风能生产系统使用电力电子转换器,不幸的是,电力电子转换器被证明是其最脆弱的部件之一,并且导致大部分系统停机。因此,这些转换器中的实时故障监视,故障诊断和正确的系统重新配置对于转换器和整个系统的容错操作是必不可少的。本文提出并验证了带有双馈感应发电机的风能系统的综合容错电力电子接口。相同的发电能力将得到保证。所提出的解决方案还包括鲁棒且非常快速的开路开关故障诊断算法,该算法对操作条件不敏感,因此适用于此应用。通过仿真,循环中的硬件验证和实验测试来证明所提出方法的有效性。 突出显示 提出了一种基于DFIG的风能系统的实时电源开关故障诊断。 在开路开关故障下执行容错操作。 的效力 验证了该方法的有效性。

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