Control strategy for DFIG-based wind farm in microgrid

被引:0
|
作者
机构
[1] School of Electrical Engineering, Northeast Dianli University
[2] School of Electrical and Electronic Engineering, North China Electric Power University
来源
Li, G. | 1600年 / Electric Power Automation Equipment Press卷 / 33期
关键词
Distributed power generation; Doubly fed induction generator; Droop characteristics; Microgrid; Sensitivity analysis; Voltage control;
D O I
10.3969/j.issn.1006-6047.2013.10.001
中图分类号
学科分类号
摘要
A control strategy is proposed for the DFIG (Doubly Fed Induction Generator)-based wind farm in microgrid, which, in grid-connection mode, tracks the maximum wind power and adjusts the output reactive power by sensitivity analysis to depress the voltage fluctuation caused by active power variation, while in islanding mode, controls the amplitude and frequency of DFIG voltage and imitates the droop characteristics to cooperate with other distributed generators with droop control. Simulative results show that, the proposed strategy adjusts the active power balance of microgrid and maintains the voltage stability of system, supporting the stable operation of microgrid in either grid-connection mode or islanding mode.
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页码:1 / 7+52
相关论文
共 21 条
  • [1] Wang H., Lu Z., Zhou S., Et al., Research on the capacity credit of wind energy resources, Proceedings of the CSEE, 25, 10, pp. 103-106, (2005)
  • [2] Barton J.P., Infield D.G., Energy storage and its use with intermittent renewable energy, IEEE Transactions on Energy Conversion, 19, 2, pp. 441-448, (2004)
  • [3] Yang X., Xiao Y., Chen S., Wind speed forecast model for wind farms based on time series analysis, Proceedings of the CSEE, 25, 11, pp. 1-5, (2005)
  • [4] Bie Z., Li G., Wang X., Review on reliability evaluation of new distribution system with micro-grid, Electric Power Automation Equipment, 31, 1, pp. 1-6, (2011)
  • [5] Li Z., Yuan Y., Smart microgrid: a novel organization form of smart distribution grid in the future, Automation of Electric Power Systems, 33, 17, pp. 42-48, (2009)
  • [6] Guo L., Wang C., Dynamical simulation on microgrid with different types of distributed generations, Automation of Electric Power Systems, 33, 2, pp. 82-86, (2009)
  • [7] Ding M., Zhang Y., Mao M., Key technologies for microgrids being researched, Power System Technology, 33, 11, pp. 6-11, (2009)
  • [8] Lu Z., Wang C., Min Y., Et al., Overview on microgrid research, Automation of Electrical Power Systems, 31, 19, pp. 100-107, (2007)
  • [9] Shahabi M., Haghifam M.R., Mohamadian M., Et al., Micro-grid dynamic performance improvement using a doubly fed Induction wind generator, IEEE Transactions on Energy Conversion, 24, 1, pp. 137-145, (2009)
  • [10] Fazeli M., Asher G.M., Klumpner C., Et al., Novel integration of DFIG-based wind generators within microgrids, IEEE Transactions on Energy Conversion, 26, 3, pp. 840-850, (2011)