Self-starting strategy of variable speed pumped storage units in pumping mode

被引:0
作者
Shao Y. [1 ]
Ji L. [1 ,2 ]
Yuan Y. [2 ]
Gao S. [3 ]
机构
[1] NARI Group Corporation (State Grid Electric Power Research Institute), Nanjing
[2] College of Energy and Electrical Engineering, Hohai University, Nanjing
[3] State Grid Xinyuan Company Limited, Beijing
来源
Dianli Xitong Zidonghua/Automation of Electric Power Systems | 2016年 / 40卷 / 24期
关键词
Mechanical characteristic; Pumped storage; Self-starting; Variable speed constant frequency;
D O I
10.7500/AEPS20160816008
中图分类号
学科分类号
摘要
This paper focuses on the self-starting strategy of variable speed pumped storage units (VSPSU) by the shorting machine stator. Firstly, the mathematical model, phasor diagram and characteristics of VSPSU are proposed while the machine stator is being short-circuited. Then a robust stator flux observer is created for the self-starting strategy with stator flux oriented control to accelerate the rotor for synchronization. The starting time, torque characteristics and estimated accuracy of this strategy are quantitatively analyzed by simulation. The results show that the strategy has good starting performance and robustness. © 2016 Automation of Electric Power Systems Press.
引用
收藏
页码:125 / 130
页数:5
相关论文
共 17 条
  • [1] Lung J.K., Lu Y., Hung W.L., Et al., Modeling and dynamic simulations of doubly fed adjustable-speed pumped storage units, IEEE Trans on Energy Conversion, 22, 2, pp. 250-258, (2007)
  • [2] Fraile-Ardanuy J., Wilhelmi J.R., Fraile-Mora J.J., Et al., Variable-speed hydro generation: operational aspects and control, IEEE Trans on Energy Conversion, 21, 2, pp. 569-574, (2006)
  • [3] Xu F., Chen L., Jin H., Et al., Modeling and application analysis of optimal joint operation of pumped storage power station and wind power, Automation of Electric Power Systems, 37, 1, pp. 149-154, (2013)
  • [4] Tang H., Huang C., Ding J., Optimal dispatching schedule of hybrid pumped-storage power station, Automation of Electric Power Systems, 35, 21, pp. 40-45, (2011)
  • [5] Yang S., Wu Y., Lin H., Et al., Integrated mechanical and electrical DFIG wind turbine model development, IEEE Trans on Industry Applications, 50, 3, pp. 2090-2102, (2014)
  • [6] Hu J., Nian H., Xu H., Et al., Dynamic modeling and improved control of DFIG under distorted grid voltage conditions, IEEE Trans on Energy Conversion, 26, 1, pp. 163-175, (2011)
  • [7] Chen H.C., Chen P.H., Active and reactive power control of a doubly fed induction generator, Applied Mathematics & Information Sciences, 8, 1, pp. 117-124, (2014)
  • [8] Nasir U., Iqbal Z., Rasheed M.T., Et al., Active and reactive power control of a variable speed pumped storage system, IEEE 15th International Conference on Environment and Electrical Engineering (EEEIC), pp. 6-11
  • [9] Abdalla O.H., Han M., Power electronics converters for variable speed pump storage, International Journal of Power Electronics and Drive System, 3, 1, pp. 74-82, (2013)
  • [10] Shree K.H.P., Ram S.V.J., Decoupled control of active and reactive powers of DFIG with cascaded SPWM converters, International Journal of Engineering Science and Technology, 3, 10, pp. 7538-7544, (2011)