Electromagnetic and temperature field analyses of winding short-circuits in DFIGs

Zheng Liu, W. Cao, Z. Tan, Xueguan Song, B. Ji, G. Tian
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引用次数: 3

Abstract

The doubly fed induction generator (DFIG) plays an important role in the wind power generation. With the ever-increasing demand for improving the reliability and energy efficiency whilst reducing the maintenance and operational costs, there is a trend to develop the state-of-the-art condition monitoring technologies in wind applications especially for offshore applications. Winding short-circuits faults are among major electrical failures in DFIGs and can be caused by many reasons and can lead to undesirable heating to impact on the performance of the machine. They have not been fully understood due to the complexity of the problem which requires 3D electromagnetic and thermal fields to understand the fault mechanisms. This paper presents coupled electromagnetic and thermal field analyses of DFIGs with a focus on winding faults. Finite element tools are used for analyzing the characteristics of magnetic field, temperature distribution and heat flow during the healthy and faulty operations. This work can provide an insight into the DFIG's stator and rotor winding faults and suggestions for improvement in thermal design of the DFIG machines.
dfig绕组短路的电磁场和温度场分析
双馈感应发电机(DFIG)在风力发电中起着重要作用。随着对提高可靠性和能源效率,同时降低维护和运营成本的需求不断增加,在风力发电应用中,特别是海上应用中,开发最先进的状态监测技术是一种趋势。绕组短路故障是DFIGs的主要电气故障之一,其原因有很多,并可能导致不良的发热,影响机器的性能。由于问题的复杂性,需要三维电磁场和热场来理解故障机制,因此尚未完全了解它们。本文介绍了DFIGs的电磁场和热场耦合分析,重点分析了绕组故障。利用有限元工具对正常运行和故障运行时的磁场、温度分布和热流特性进行了分析。这一工作可以为DFIG的定子和转子绕组故障提供深入的了解,并为改进DFIG的热设计提供建议。
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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