期刊文献+

半波长交流输电线路行波差动电流特性的研究 被引量:28

Study on the Characteristic of Travelling Wave Differential Current on Half-wave-length AC Transmission Lines
下载PDF
导出
摘要 行波差动保护是一种不受分布电容电流影响的电流差动保护原理,适用于长距离超、特高压输电线路。但行波差动保护应用于半波长输电线路时,由于线路非常长,且线路参数随频率变化,传播函数随频率的增大迅速衰减到零,因此行波差动保护的时域方程不再严格成立,在区外故障时仍会有幅值较大的高频差动电流。文中从理论上分析了线路频变参数对半波长输电线路下的行波差动保护的影响,指出使用工频分量能够有效的避开线路频变参数的影响,并通过仿真进行了验证。 Travelling wave differential protection is one kind of current differential protection which is immune to distributed capacitance current and is suitable for long-distance extra/ultra-high-voltage transmission line. However, when applied to half-wave-length transmission line, because the line is very long and the line parameters are frequency-dependent, the propagation function attenuates rapidly to zero with the increase of frequency. Then the time-domain equations of travelling wave differential protection do not strictly hold and high-frequency differential current with high amplitude appears during external fault. This paper analyzed the impact due to the frequency-dependent line parameters in theory and points out that the impact can be avoided by using power-frequency component. The analysis was verified by simulation results.
出处 《中国电机工程学报》 EI CSCD 北大核心 2017年第8期2261-2269,共9页 Proceedings of the CSEE
关键词 半波长输电线路 行波差动保护 频变参数 工频分量 half-wave-length transmission line travelling wave differential protection frequency-dependent parameter power-frequency component
  • 相关文献

参考文献5

二级参考文献59

  • 1张运洲.对我国特高压输电规划中几个问题的探讨[J].电网技术,2005,29(19):19-22. 被引量:107
  • 2孙向飞,束洪春,司大军.输电线路不同期合闸操作的行波特征分析[J].中国电机工程学报,2006,26(24):31-36. 被引量:8
  • 3GuruBS,HizirogluHR.电磁场与电磁波[M].周克定,张肃文,泽.北京:机械工业出版社,2000:126.
  • 4[4]Dommel H W. Digital Computer Solution of Electro-magnetic Transients in Single and Multiphase Networks. IEEE Trans on Power Apparatus and Systems, 1969, 88(4): 388~399
  • 5郑健超.智能电力设备与半波长交流输电.动力与电气工程师,2009,(3):12-15.
  • 6LLICETO F, CINIERI E. Analysis of half-wave length transmission lines with simulation of corona losses. IEEE Trans on Power Delivery, 1988, 3(4): 2081-2091.
  • 7HUBERT F J, GENT M R. Half wavelength power transmission lines. IEEE Trans on Power Apparatus and Systems, 1965, 84(10): 965-974.
  • 8PRABHAKARA F S, PARTHASARATHY K, RAMACHANDRA RAO H N. Analysis of natural half-wavelength power transmission lines. IEEE Trans on Power Apparatus and Systems, 1969, 88(12): 1787-1794.
  • 9PRABHAKARA F S, PARTHASARATHY K, RAMACHANDRA RAO H N. Performance of tuned half-wavelength power transmission lines. IEEE Trans on Power Apparatus and Systems, 1969, 88(12) : 1795-1802.
  • 10AREDES M, PORTELA C, VAN EMMERIK E L, et al. Static series compensators applied to very long distance transmission lines. Electrical Engineering, 2004, 86(2): 69-76.

共引文献191

同被引文献368

引证文献28

二级引证文献172

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