Analytical calculation of short circuit fault of phase compound excitation generator in control rod power system of nuclear power plant

被引:0
|
作者
Xiao X. [1 ]
Hao L. [1 ]
Wang Z. [1 ]
He P. [2 ]
机构
[1] School of Electrical Engineering, Beijing Jiaotong University, Beijing
[2] Liaoning Hongyanhe Nuclear Power Co.,Ltd., Dalian
关键词
fault analysis; nuclear power plant control rod power system; phase compound excitation; short circuit fault of generator;
D O I
10.16081/j.epae.202301013
中图分类号
学科分类号
摘要
For the control rod power supply system of nuclear power plant,the existing protection only uses the fixed time overcurrent protection with rated current as the backup protection for short circuit fault,which has led to several events of overcurrent protection preemptive action and mismatch with loss of exci⁃ tation protection in this system. The key to solve the protection mismatch problem is to accurately analyze the short circuit fault current of generator in the control rod power supply system. The key point of the analysis is to consider the influence of the phase compound brushless excitation mode actually adopted by generator on the fault current,and the phase compound excitation current is composed of the excitation components corresponding to the shunt excitation voltage component and the compound excitation current. Through the reasonable assumption and model simplification,combined with the basic equations of the generator and the mathematical model of the excitation system,the three-phase short circuit current under the shunt excitation voltage component is derived. The compound excitation current component is introduced to modify the short circuit current according to the variation of excitation current,and the time-domain analytical expression of three-phase short circuit current of phase compound excitation generator including transient component and steady-state component is obtained. The time-domain analytical expression of two-phase short circuit current is obtained by extending the positive sequence equivalent rule. The electromagnetic transient model of the control rod power supply system is established based on PSCAD/EMTDC platform to verify the theoretical analysis results,and the protection optimization method is further discussed. © 2023 Electric Power Automation Equipment Press. All rights reserved.
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页码:124 / 132
页数:8
相关论文
共 21 条
  • [1] WEI Hongyi, ZHUO Zhenyu, ZHANG Ning, Et al., Transition path optimization and influencing factor analysis of carbon emission peak and carbon neutrality for power system of China [J], Automation of Electric Power Systems, 46, 19, pp. 1-12, (2022)
  • [2] WANG Haiyang, RONG Jian, Analysis on China’s nuclear energy development path under the goal of peaking carbon emissions and achieving carbon neutrality[J], Electric Power, 54, 6, pp. 86-94, (2021)
  • [3] DING Jian, FANG Xiaosong, SONG Yunting, Et al., Conception of electricity and hydrogen integrated energy network for re⁃ newable energy transmission in Western China under back⁃ ground of carbon neutralization[J], Automation of Electric Power Systems, 45, 24, pp. 1-9, (2021)
  • [4] SHEN Zhihua, LING Zhibin, Design of a power system for the control rod drive mechanism of nuclear power plants[J], Power Equipment, 32, 4, pp. 268-271, (2018)
  • [5] DONG Jiuchen, WANG Xitian, LIU Minghang, Et al., Precise model of bus-fed static excitation system and simulation[J], Electric Power Automation Equipment, 36, 5, pp. 112-115, (2016)
  • [6] YANG Lihuan, YANG Zhenrong, HU Huarong, Et al., Design of main parameters for 700 MW hydroelectric generator poten⁃ tial source static excitation system[J], Electric Power Automa⁃ tion Equipment, 31, 7, pp. 123-126, (2011)
  • [7] BANSAL R C., Three-phase self-excited induction generators:an overview[J], IEEE Transactions on Energy Conversion, 20, 2, pp. 292-299, (2005)
  • [8] LIANG Hao, XIE Huan, WU Tao, Et al., Simulation analysis and performance evaluation of AVR characteristics in real cascading failure[J], Electric Power Automation Equipment, 41, 6, pp. 207-213, (2021)
  • [9] LIU Zhenwu, WEI Jianzhong, GAO Shibin, Improved scheme of backup protection for generators with self-shunt excitation [J], Proceedings of the CSU-EPSA, 25, 2, pp. 53-57, (2013)
  • [10] LU Jinsheng, ZHANG Changyan, YAN Xueguang, Et al., The out phase failure current of self-generating calculation,setting and action analysis of the protection[J], Power System Pro⁃ tection and Control, 37, 13, pp. 63-67, (2009)