Distance protection for HVDC transmission line based on distributed parameter model

被引:0
|
作者
Suonan, Jiale [1 ]
Hou, Zhuo [1 ]
Song, Guobing [1 ]
Zhang, Jiankang [1 ]
机构
[1] Xi'an Jiaotong University, Xi'an 710049, China
关键词
HVDC power transmission - Location - Time domain analysis - Electric fault location - Surge protection - Differential equations - Electric power system protection;
D O I
暂无
中图分类号
学科分类号
摘要
For distance protection, there is no need to determine accurate fault location across the whole line, so long as the border between inside faults and outside faults could be accurately distinguished. Because both terminals of HVDC transmission line are connected to DC smoothing reactor so that it has a clear boundary character, a time-domain distance protection method for HVDC transmission line is proposed. The method is based on the distributed parameter line model. It uses the voltage and current at protection location to calculate them at the terminal of the line. And then the fault distance is calculated with the differential equation. The result is used as action criteria of relay protection. Aimed at problems of large fault location error and possibility of protection refusing to act when the neighbor line fault occurs, the two-segment distance protection is proposed. Simulation results show that the protection based on this algorithm is able to distinguish the fault inside from outside and makes the protection act rapidly and stably within the whole line length. © 2011 State Grid Electric Power Research Institute Press.
引用
收藏
页码:53 / 57
相关论文
共 50 条
  • [41] Natural frequency based protection scheme for long distance transmission line
    Huang, Shaofeng
    Wang, Xingguo
    Liu, Qiankuan
    Dianli Xitong Zidonghua/Automation of Electric Power Systems, 2008, 32 (08): : 59 - 63
  • [42] Improved Protection Method of HVDC Transmission Line Based on the Analysis of Traveling Wave Dispersion
    Xie, L. H.
    Jin, L. J.
    Wang, X. L.
    Ning, L. H.
    Wang, T. L.
    2014 INTERNATIONAL CONFERENCE ON POWER SYSTEM TECHNOLOGY (POWERCON), 2014,
  • [43] A Pilot Directional Protection for HVDC Transmission Line Based on Relative Entropy of Wavelet Energy
    Lin, Sheng
    Gao, Shan
    He, Zhengyou
    Deng, Yujia
    ENTROPY, 2015, 17 (08): : 5257 - 5273
  • [44] Pilot Protection for MMC-HVDC Transmission Line Based on Custom Difference Current
    Ning L.
    Tai N.
    Zheng X.
    Huang W.
    Zheng, Xiaodong (xiaodongzheng@sjtu.edu.cn), 1600, Automation of Electric Power Systems Press (41): : 87 - 93and133
  • [45] A novel pilot protection scheme for HVDC transmission line based on current waveform matching
    Liu, Jian
    Tai, Nengling
    Fan, Chunju
    Dianwang Jishu/Power System Technology, 2015, 39 (06): : 1736 - 1743
  • [46] Configuration Scheme of Transmission Line Protection for Flexible HVDC Grid
    Dong X.
    Tang L.
    Shi S.
    Qiu Y.
    Kong M.
    Pang H.
    Dianwang Jishu/Power System Technology, 2018, 42 (06): : 1752 - 1759
  • [47] A Novel Distance Protection Scheme for HVDC Transmission Lines Based on Criterion Extremum Online Estimation
    Qin Y.
    Wen M.
    Bai Y.
    Zheng J.
    Wang X.
    Wang Y.
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2020, 40 (12): : 3888 - 3896
  • [48] A Lightning Stroke Identification Method for HVDC Transmission Line Protection
    Liu, Zhen
    Gao, Houlei
    Li, Lin
    Peng, Fang
    2023 IEEE BELGRADE POWERTECH, 2023,
  • [49] A Transient Harmonic Current Protection Scheme for HVDC Transmission Line
    Zheng Xiao-Dong
    Tai Neng-Ling
    Thorp, James S.
    Yang Guang-Liang
    IEEE TRANSACTIONS ON POWER DELIVERY, 2012, 27 (04) : 2278 - 2285
  • [50] An Online Method of Measuring DC Resistance of Transmission Lines Based On Simplified Distributed Parameter Line Model
    Lan, Shun
    Li, Siyue
    Li, Xiaokang
    Wang, Bang
    Mao, Hanling
    Huang, Zhenfeng
    Li, Xinxin
    2020 10TH INSTITUTE OF ELECTRICAL AND ELECTRONICS ENGINEERS INTERNATIONAL CONFERENCE ON CYBER TECHNOLOGY IN AUTOMATION, CONTROL, AND INTELLIGENT SYSTEMS (IEEE-CYBER 2020), 2020, : 438 - 443