Modeling of large-capacity nuclear power unit suitable for power grid stability analysis

被引:0
|
作者
Liu Q. [1 ]
Wu G. [2 ]
Song X. [2 ]
Su Z. [2 ]
Huang J. [1 ]
Su Y. [3 ]
机构
[1] Institute of Electrical and Electronic Engineering, North China Electric Power University, Baoding, 071003, Hebei Province
[2] China Electric Power Research Institute, Haidian District, Beijing
[3] State Grid Fujian Electric Power Co., Ltd., Fuzhou, 350003, Fujian Province
来源
| 1600年 / Power System Technology Press卷 / 41期
关键词
Large-capacity nuclear power unit; Model; Power grid; Stability;
D O I
10.13335/j.1000-3673.pst.2016.1362
中图分类号
学科分类号
摘要
Expansion of nuclear power changes power grid operation mode and brings new problems such as difficulty of peak load and frequency regulations. In order to master operation characteristics of nuclear power unit, more accurate modeling suitable for power grid stability analysis is pressing. This paper puts forward a pressurized water reactor nuclear power unit model based on MATLAB/Simulink. By using PSD-FDS (power system department-full dynamic simulation), this paper analyzes transient process of disturbed nuclear power unit and researches dynamic response to grid frequency and voltage fluctuations. Simulation results show that the model can accurately represent dynamic performance of nuclear power unit after power system disturbance and provide an effective tool for further research on interaction between power grid and large-capacity nuclear power unit. © 2017, Power System Technology Press. All right reserved.
引用
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页码:907 / 914
页数:7
相关论文
共 20 条
  • [1] Du X., Energy revolution for sustainable future, Journal of Beijing Institute of Technology(Social Sciences Edition), 16, 5, pp. 1-8, (2014)
  • [2] Trehan N.K., Saran R., Nuclear power revival, Nuclear Science Symposium Conference, pp. 3630-3633, (2004)
  • [3] Wu W., Zuo Z., The impact on power grid operation after the large capacity nuclear power generating unit putting into operation, Hongshui River, 30, 6, pp. 134-145, (2011)
  • [4] Sun S., Xie C., Lu Y., Et al., Power system online security and stability analysis application modes, Power System Technology, 39, 10, pp. 2875-2881, (2015)
  • [5] Sun W., Liu D., Zhao J., Et al., An AP1000 nuclear power plant dynamic model suitable for stability analysis of power grid, Power System Technology, 38, 4, pp. 987-993, (2014)
  • [6] Zhao J., Liu D., Ouyang L., Et al., Analysis of the mutual interaction between large-scale pressurized water reactor nuclear power plants and power systems, Proceedings of the CSEE, 32, 1, pp. 64-70, (2012)
  • [7] Zhao J., Liu D., Yang N., Et al., Operation mode and benefits of nuclear power plant participating in peak load regulation of power system, Power System Technology, 36, 12, pp. 250-255, (2012)
  • [8] Chen F., Huang W., Research on participating in peak regulation of nuclear units in Fujian power grid, Electric Power & Electrical Engineering, 32, 1, pp. 1-4, (2012)
  • [9] Tang Z., Chen S., Wu Z., Et al., Dynamic simulations of primary frequency regulation for pressurized water reactor nuclear power generation units, Power System Technology, 37, 11, pp. 3197-3201, (2013)
  • [10] Arda S.E., Holbert K.E., Implementing a pressurized water reactor nuclear power plant model into grid simulations, PES General Meeting, pp. 1-5, (2014)