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Model-Based Fault Detection and Isolation of a Liquid-Cooled Frequency Converter on a Wind Turbine

机译:风力机液冷变频器的基于模型的故障检测与隔离

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With the rapid development of wind energy technologies and growth of installed wind turbine capacity in the world, the reliability of the wind turbine becomes an important issue for wind turbine manufactures, owners, and operators. The reliability of the wind turbine can be improved by implementing advanced fault detection and isolation schemes. In this paper, an observer-based fault detection and isolation method for the cooling system in a liquid-cooled frequency converter on a wind turbine which is built up in a scalar version in the laboratory is presented. A dynamic model of the scale cooling system is derived based on energy balance equation. A fault analysis is conducted to determine the severity and occurrence rate of possible component faults and their end effects in the cooling system. A method using unknown input observer is developed in order to detect and isolate the faults based on the developed dynamical model. The designed fault detection and isolation algorithm is applied on a set of measured experiment data in which different faults are artificially introduced to the scaled cooling system. The experimental results conclude that the different faults are successfully detected and isolated.
机译:随着风能技术的飞速发展和世界范围内已安装的风力发电机容量的增加,风力发电机的可靠性成为风力发电机制造商,所有者和运营商的重要问题。通过实施高级故障检测和隔离方案,可以提高风力涡轮机的可靠性。本文提出了一种基于观测器的风机水冷变频器冷却系统故障检测和隔离方法,该方法是在实验室中以标量形式构建的。基于能量平衡方程,得出了水垢冷却系统的动力学模型。进行故障分析,以确定可能的组件故障的严重性和发生率,以及它们在冷却系统中的最终影响。开发了一种使用未知输入观察器的方法,以便基于开发的动力学模型来检测和隔离故障。设计的故障检测和隔离算法应用于一组测量的实验数据,其中将不同的故障人为地引入了规模化冷却系统。实验结果表明,可以成功地检测和隔离不同的故障。

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  • 来源
    《Journal of control science and engineering 》 |2012年第1期| 684610.1-684610.21| 共21页
  • 作者单位

    Innovation Center, KK-Electronic ah, Bogildve] 3, 7430 Ikast, Denmark;

    Innovation Center, KK-Electronic ah, Bogildve] 3, 7430 Ikast, Denmark;

    Section of Automation and Control, Department of Electronic Systems, Aalborg University, Fredrik Bajers Vej 7C, 9220 Aalborg, Denmark;

    Section of Automation and Control, Department of Electronic Systems, Aalborg University, Fredrik Bajers Vej 7C, 9220 Aalborg, Denmark;

    Section of Automation and Control, Department of Electronic Systems, Aalborg University, Fredrik Bajers Vej 7C, 9220 Aalborg, Denmark;

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