Application Research of Improved Traveling Wave Method in Fault Location of Electrified Railway

被引:0
|
作者
He, Anqi [1 ]
机构
[1] Wuhan Railway Vocat Coll Technol, Wuhan 430205, Peoples R China
关键词
Catenary system; Wave process; Modulus maxima; Fault location;
D O I
10.1063/1.5137856
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Short-circuit fault of electrified railway catenary system cannot be avoided. How to accurately and reliably locate the fault point and eliminate the fault is one of the effective measures to improve the efficiency of railway operation and improve the safety and stability of the railway system. When the short-circuit grounding fault occurs in the catenary system, the transient traveling wave signal will be reflected back and forth at the fault point and the end point. Identifying the time accurately when the initial fault traveling wave and the reflected wave of the fault point arrive at the measurement point is the key to locate the fault point. Simulation was performed on the PSCAD/EMTDC platform. The simulation results show that after the line fault occurs, the improved traveling wave fault location algorithm based on wavelet modulus Maxima can accurately locate the fault location, and the measurement error is controlled within an acceptable range.
引用
收藏
页数:5
相关论文
共 50 条
  • [31] Research on a Distribution Line Zero Mode Current Traveling Wave Fault Location Method Immune from Wave Velocity Affection
    Chen, Liang
    Zhang, XiaoFeng
    Li, Geng
    MODERN TECHNOLOGIES IN MATERIALS, MECHANICS AND INTELLIGENT SYSTEMS, 2014, 1049 : 621 - 625
  • [32] Fault diagnosis and location of electrified railway grounding grids based on intelligent algorithm
    Chen, Minwu
    Liu, Siyang
    Zhao, Ning
    Fu, Haochun
    Lv, Yabo
    INTERNATIONAL TRANSACTIONS ON ELECTRICAL ENERGY SYSTEMS, 2021, 31 (02):
  • [33] Influence on Traveling Wave Fault Location from Structural Characteristics of Railway Automatic Blocking Electric Lines
    He, Zhan-yuan
    Tian, Xing-jun
    Xing, Zhi-jie
    Liu, Yu-xi
    Lei, Yun-tao
    Gao, Qiang
    2018 3RD INTERNATIONAL CONFERENCE ON AUTOMATION, MECHANICAL AND ELECTRICAL ENGINEERING (AMEE 2018), 2018, 298 : 47 - 50
  • [34] Improved Method for Fault Location of Single-ended Traveling-wave Using Line Midpoint Current Measurement
    Ding J.
    Wang X.
    Zheng Y.
    Li L.
    Gaodianya Jishu/High Voltage Engineering, 2020, 46 (05): : 1814 - 1822
  • [35] Research on power penetration cable line fault location based on distributed traveling wave location technology
    Mao, Xiaopo
    Xiang, Bin
    Tu, Suge
    AIP ADVANCES, 2022, 12 (05)
  • [36] Research on Traveling Wave Fault Location System based on High Accuracy Synchronous Clock
    Deng, Feng
    Li, Xinran
    Zeng, Xiangjun
    Zhao, Donghong
    Yang, Lan
    2015 5TH INTERNATIONAL CONFERENCE ON ELECTRIC UTILITY DEREGULATION AND RESTRUCTURING AND POWER TECHNOLOGIES (DRPT 2015), 2015, : 1147 - 1151
  • [37] Modeling technology in traveling-wave fault location
    Jinrui, T. (tangjinrui@hust.edu.cn), 1600, Universitas Ahmad Dahlan, Jalan Kapas 9, Semaki, Umbul Harjo,, Yogiakarta, 55165, Indonesia (11):
  • [38] Traveling Wave Fault Location Using Layer Peeling
    Robson, Stephen
    Haddad, Abderrahmane
    Griffiths, Huw
    ENERGIES, 2019, 12 (01)
  • [39] Study on blocking algorithm of traveling wave fault location
    Cui L.
    Li S.
    Guo Q.
    Huang L.
    Dianli Xitong Baohu yu Kongzhi/Power System Protection and Control, 2019, 47 (05): : 129 - 137
  • [40] Fault location using traveling wave for power networks
    Zeng, XJ
    Li, KK
    Liu, ZG
    Yin, XG
    CONFERENCE RECORD OF THE 2004 IEEE INDUSTRY APPLICATIONS CONFERENCE, VOLS 1-4: COVERING THEORY TO PRACTICE, 2004, : 2426 - 2429