Typical fault analysis and revelation of a low voltage side trip of a main transformer in a 220 kV substation

被引:0
|
作者
Hu H. [1 ]
Wei H. [1 ]
Liu G. [1 ]
Zhang R. [1 ]
Cai Z. [1 ]
Yang M. [1 ]
Jiang W. [2 ]
机构
[1] State Grid Beijing Electric Power Company, Beijing
[2] Maintenance Branch of State Grid Shanxi Electric Power Corporation, Taiyuan
关键词
Backup protection; Fault analysis; Low-voltage side fault of main transformer; Micro-grid; Small-resistance grounding system;
D O I
10.19783/j.cnki.pspc.201620
中图分类号
学科分类号
摘要
Among all kinds of power substation faults across various voltage levels, the low-voltage side fault of the main transformer is a common typical one. This fault is often dependent on the backup protection action of the relevant equipment for its removal. This inevitably enlarges the fault-impacted areas. In order to remedy this problem, the fault at the low voltage side of the main transformer in a 220 kV substation where the neutral point is grounded through the small resistance is investigated. The symmetrical component method is used to analyze the protection action, which is further combined with fault-recording and phasor diagrams. The insulation breakdown of the bus bridge at the low voltage side of the main transformer outlet is the cause of the dead zone fault. The characteristics of dead zone fault with grounding fault representation are analyzed. This should give full play to shift personnel's subjective initiative, as well as improving the comprehensive level of equipment operation and maintenance, improving the intelligent level of the integrated dispatching and control system of the primary and distribution network, and changing the power supply mode of the power grid. Some suggestions are put forward to prevent and alleviate the influence of such faults in the future. © 2021 Power System Protection and Control Press.
引用
收藏
页码:153 / 161
页数:8
相关论文
共 30 条
  • [1] YAN Bingyao, Fault research of overstep tripping in 110 kV line in 220 kV substation, Rural Electrification, 12, pp. 28-30, (2018)
  • [2] LIU Yadong, ZHANG Xindong, WANG Hengchao, Et al., Reason analysis of main transformer overstep tripping due to 10 kV line protection refusing operation, Rural Electrification, 4, pp. 31-33, (2020)
  • [3] TU Binghui, DENG Chen, YE Guoyao, Et al., Analysis and countermeasures of overstepping trip caused by 20 kV line fault, Electrotechnics Electric, 10, pp. 28-31, (2020)
  • [4] GU Zhongde, ZHANG Xi, TU Min, Synthetic fault analysis of a relay protection override trip, Smart Grid, 2, pp. 67-72, (2020)
  • [5] HUANG Yanhai, HAI Tianshu, LAN Chenghao, Et al., Sishui No.2 main transformer winding fault analysis, 2018 China International Conference on Electricity Distribution (CICED2018), pp. 1273-1278, (2018)
  • [6] YIN Chaoyong, XU Hao, XU Liqiang, Et al., Analysis on over tripping accident of main transformer caused by a line high resistance grounding fault, Hunan Electric Power, 40, 4, pp. 51-54, (2020)
  • [7] WANG Feng, YU Bin, WANG Jinchuan, Analysis on the fault caused by insulation damage of metal enclosed busbar, Shanxi Electric Power, 2, pp. 26-27, (2011)
  • [8] WANG Dong, QIU Zhibin, WEI Wei, Et al., Single-phase grounding fault analysis of a GIS in a 220 kV substation and treatment measures, High Voltage Apparatus, 56, 11, pp. 259-265, (2020)
  • [9] LIU Yugen, CHEN Chao, YANG Ruijing, Et al., Location method of ground fault in DC system of substation based on wavelet relative entropy, High Voltage Apparatus, 56, 1, pp. 169-174, (2020)
  • [10] CHU Hongding, XU Bingyin, CHEN Heng, Et al., Simulation test system for small current grounding fault based on digital simulation results, Electrical Measurement & Instrumentation, 56, 5, pp. 26-31, (2019)