电工技术学报  2015, Vol. 30 Issue (16): 129-136    DOI:
电力电子 |
永磁直驱系统变流器开路故障诊断方法
黄科元,刘静佳,黄守道,易韵岚,周李泽
湖南大学电气与信息工程学院 长沙 410082
Converters Open-Circuit Fault-Diagnosis Methods Research for Direct-Driven Permanent Magnet Wind Power System
Huang Keyuan,Liu Jingjia,Huang Shoudao,Yi Yunlan,Zhou Lize
College of Electrical and Information Engineering Hunan University Changsha 410082 China
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摘要 永磁直驱系统变流器的开路故障会严重影响系统的运行特性。为了提高系统可靠性,要求系统能够及时检测到故障的发生并准确判断出故障器件的所在位置。本文根据故障时电流的变化特性,提出了变流器单个器件开路故障的诊断方法。该方法通过电流Park矢量相位角的变化检测故障的发生,并依据故障后机侧平均电流的Park矢量相位角所在区间和网侧各相电流的正负确定故障器件的所在位置。仿真和实验结果证明所提方法准确、可靠,且对负载突变、电网电压跌落等干扰具有鲁棒性。
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黄科元
刘静佳
黄守道
易韵岚
周李泽
关键词 永磁直驱风力发电变流器故障故障诊断    
Abstract:The open-circuit faults of the converters in wind energy conversion system will seriously affect the operation of the system. In order to improve the reliability of the system, it is necessary that demands the system can timely detect faults and accurately diagnose the faults’ position. This paper presents a diagnostic method for an open-circuit fault in the two power converters according to the variations of fautly current. This method detects faults based on the variations of current Park’s vector phase, locates fault’s position according to the range of motor-side average current Park’s vector phase and the positive or negative of grid-side each phase current. Simulation and experimental results verify the validity of the proposed method, besides this method has the robustness against disturbance such as load transients, grid voltage sags.
Key wordsDirectly-driven permanent magnet    wind power generation    converter fault    fault diagnostic   
收稿日期: 2013-07-12      出版日期: 2015-09-14
PACS: TM461  
  TM464  
基金资助:湖南省自然科学基金(11JJ3062),国家国际科技合作项目(2011DFA62240)和湖南大学青年教师成长计划资助项目
作者简介: 黄科元 男,1974年生,博士,副教授,研究方向为电力电子与电气传动,风力发电机系统及其控制。刘静佳 女,1988年生,硕士,研究方向为风力发电的变流技术。
引用本文:   
黄科元,刘静佳,黄守道,易韵岚,周李泽. 永磁直驱系统变流器开路故障诊断方法[J]. 电工技术学报, 2015, 30(16): 129-136. Huang Keyuan,Liu Jingjia,Huang Shoudao,Yi Yunlan,Zhou Lize. Converters Open-Circuit Fault-Diagnosis Methods Research for Direct-Driven Permanent Magnet Wind Power System. Transactions of China Electrotechnical Society, 2015, 30(16): 129-136.
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