期刊文献+

Arc flash fault detection in wind farm collection feeders based on current waveform analysis 被引量:6

原文传递
导出
摘要 High impedance faults(HIFs) are easy to occur in collective feeders in wind farms and may cause the cascading of wind generators tripping. This kind of faults is difficult to be detected by traditional relay or fuse due to the limited fault current values and the situation is worse in wind farms. The mostly adopted HIF detection algorithms are based on the 3rd harmonic characteristic of the fault zero-sequence currents, whereas these 3rd harmonics are very easy to be polluted by wind power back-to-back converters. In response to this problem, the typical harmonic characteristic of HIF arc flash based on Mayr’s arc model is first analyzed, and the typical fault waveforms of HIF in wind farm are presented. Then the performance of the harmonic based HIF detection algorithm is discussed,and a novel detection algorithm is proposed from the viewpoint of time domain, focusing on the convex and concave characteristic of zero-sequence current at zerocrossing points. A HIFs detection(HIFD) prototype implementing the proposed algorithm has been developed.The sensitivity and security of the algorithm are proved byfield data and RTDS experiments.
出处 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2017年第2期211-219,共9页 现代电力系统与清洁能源学报(英文)
基金 supported in part by National Natural Science Foundation of China(No.51120175001,No.51477084) in part by the Beijing Natural Science Foundation(No.3152016)
  • 相关文献

参考文献1

二级参考文献15

  • 1雷亚洲,Gordon Lightbody.风力发电与电力市场[J].电力系统自动化,2005,29(10):1-5. 被引量:56
  • 2关宏亮,赵海翔,迟永宁,王伟胜,戴慧珠,杨以涵.电力系统对并网风电机组承受低电压能力的要求[J].电网技术,2007,31(7):78-82. 被引量:82
  • 3徐科,胡敏强,杜炎森,杨晓静.直流母线电压控制实现并网与最大风能跟踪[J].电力系统自动化,2007,31(11):53-58. 被引量:22
  • 4MURDOCH A, BARTON R S, WINKELMAN J R, et al. Control design and performance analysis of a 6 MW wind turbine generator. IEEE Transactions on Power Apparatus and Systems, 1983, 102(5): 1340- 1347.
  • 5KIM S K, KIM E S. PSCAD/EMTDC-based modeling and analysis of a gearless variable speed wind turbine. IEEE Transactions on Energy Conversion, 2007, 22(2) : 421-430.
  • 6CHEN Z, SPOONER E. Wind turbine power converters: a comparative study// Proceedings of 7the International Conference on Power Electronics and Variable Speed Drives, Setember 21-23, 1998, London, 1998:471-476.
  • 7SCHIEMENZ I, STIEBLER M. Control of a permanent magnet synchronous generator used in a variable speed wind energy system// Proceedings of Electric Machines and Drives Conference, June 18-20, 2001, IEMDC, Cambridge, MA, USA. Piscataway, NJ, USA: IEEE, 2001, 872-877.
  • 8AMEI K, TAKAYASU Y, OHJI T, et al. A maximum power control of wind generator system using a permanent magnet synchronous generator and a boost chopper circuit// Proceedings of Power Conversion Conference: Vol 3, April 2-5, 2002, Osaka, Japan. Piscataway, NJ, USA: IEEE, 2002:1447-1452.
  • 9Electric Systems Consulting, ABB Inc: Integration of wind energy into the Alberta electric system, prepared for the Alberta electric system operator[DB/OL]. http://www.nwte.cn/Article/UploadSoft/200606/ 20060606125617293. pdf. 2006.
  • 10E. ON Netz GmbH. Erganzende Netzan-schlussregeln fur Windenergieanlagen[DB/OL].http://www. virtual-powerplant, com/Sonstiges/Downloads/EON _ Erg nzende Netzanschlussregeln_f_r_WEA 12-01, pdf. 2001.

共引文献12

同被引文献96

引证文献6

二级引证文献49

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部