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An electro-thermal analysis of a variable-speed doubly-fed induction generator in a wind turbine

机译:风力涡轮机中变速双馈感应发电机的电热分析

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摘要

This paper focuses on the electro-thermal analysis of a doubly-fed induction generator (DFIG) in a wind turbine (WT) with gear transmission configuration. The study of the thermal mechanism plays an important role in the development of cost-effective fault diagnostic techniques, design for reliability and premature failure prevention. Starting from an analysis of the DFIG system control and its power losses mechanism, a model that synthesizes the thermal mechanism of the DFIG and a WT system principle is developed to study the thermodynamics of generator stator winding. The transient-state and steady-state temperature characteristics of stator winding under constant and step-cycle patterns of wind speed are studied to show an intrinsic thermal process within a variable-speed WT generator. Thermal behaviors of two failure modes, i.e., generator ventilation system failure and generator stator winding under electric voltage unbalance, are examined in details and validated by both simulation and data analysis. The effective approach presented in this paper for generator fault diagnosis using the acquired SCADA data shows the importance of simulation models in providing guidance for post-data analysis and interpretation. WT generator winding lifetime is finally estimated based on a thermal ageing model to investigate the impacts of wind speed and failure mode.
机译:本文重点研究具有齿轮传动配置的风力涡轮机(WT)中双馈感应发电机(DFIG)的电热分析。对热机理的研究在开发具有成本效益的故障诊断技术,设计可靠性和预防过早失效方面起着重要作用。从对双馈发电机系统控制及其功率损耗机理的分析开始,建立了一个综合双馈发电机热机制和WT系统原理的模型,以研究发电机定子绕组的热力学。研究了风速恒定和阶跃循环模式下定子绕组的瞬态和稳态温度特性,以显示变速WT发电机中的固有热过程。详细研究了两种故障模式的热行为,即发电机通风系统故障和发电机定子绕组在电压不平衡下的热行为,并通过仿真和数据分析对其进行了验证。本文提出的有效方法用于使用采集的SCADA数据进行发电机故障诊断,显示了仿真模型在为后期数据分析和解释提供指导方面的重要性。最终,根据热老化模型估算WT发电机绕组的寿命,以研究风速和故障模式的影响。

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