Research on Control Strategy of Multi-energy Complementary Microgrid for Wind-solar Hydrogen Production

Authors

  • Cun Lu
  • Leping Yang
  • Wen Qi
  • Zhan Han

DOI:

https://doi.org/10.54097/b1170w49

Keywords:

Multi-energy complementary, microgrid, collaborative control strategy, simulation.

Abstract

The multi-energy complementary microgrid system is an effective supplement to the areas not covered by the large power grid, and can effectively solve the problem of electricity consumption in remote areas. Based on the research of wind power, photovoltaic, energy storage, hydrogen production and fuel cell systems, this paper builds a wind-solar hydrogen storage multi-energy complementary micro-grid DC network system, and puts forward cooperative control strategies of the system under different working conditions, so as to achieve stable operation of the system and maximize energy utilization. Finally, PSCAD simulation software is used to establish a simulation model for each distributed unit to verify the stability and rationality of the control strategy. The simulation results show that the control strategy can achieve efficient, cooperative and stable operation between different energy sources on the premise of ensuring the power quality of the microgrid.

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References

[1] Li Peng, ZHANG Ling, WANG Wei, et al. Application and Analysis of Microgrid Technology [J]. Power System Automation ,2009,33 (20): 109-115.

[2] Chen Yongshu, ZHOU Luowei, Du Xiong. Review on microgrid control [J]. China Electric Power, 2009,42 (7) : 31-35.

[3] XUE Huijie. Research on key technologies of water-light complementary microgrid [D]. Beijing: University of Chinese Academy of Sciences,2012.

[4] LI Yanqing, Guo Tong, Yuan Yanwu. Active Power and Frequency control strategy of microgrid based on improved sag Control [J]. Electrical Instrumentation,2017,54 (12) : 60-64.

[5] FANG Binpeng, Wang Haining, WU Zicheng. Research on Improved Island Detection Technology of Microgrid based on Sag Control [J]. Electrical Instrumentation, 2017,54 (5) : 62-67.

[6] CAI Guowei, Kong Lingguo, Yang Deyou, et al. Modeling and Operation Characteristics of large-scale wind-solar complementary power generation System [J]. Power Grid Technology, 2011,36 (1) : 65-71.

[7] Zhou Niancheng, Wang Qianggang, Du Yueming. Modeling and Simulation of wind and photovoltaic hybrid microgrid [J]. Power China, 2010,43 (4) :81-85.

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Published

19-11-2024

Issue

Section

Articles

How to Cite

Lu, C., Yang, L., Qi, W., & Han, Z. (2024). Research on Control Strategy of Multi-energy Complementary Microgrid for Wind-solar Hydrogen Production. Journal of Innovation and Development, 9(1), 18-22. https://doi.org/10.54097/b1170w49