Electric Power ›› 2022, Vol. 55 ›› Issue (10): 132-141.DOI: 10.11930/j.issn.1004-9649.202110096

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Dual-threshold Window Control Strategy of Interlinking Converter with Energy Storage System in Hybrid Microgrid

YUE huaiyu1, LIU Shasha2, WU Qiliang3   

  1. 1. State Grid Jibei Electric Power Co., Ltd., EHV Power Transmission Company, Beijing 102488, China;
    2. State Grid Jibei Electric Power Co., Ltd., Tangshan Power Supply Company, Tangshan 063000, China;
    3. State Grid Hubei Electric Power Co., Ltd., Economic and Technical Research Institute, Wuhan 430000, China
  • Received:2021-10-15 Revised:2022-06-01 Online:2022-10-28 Published:2022-10-20
  • Supported by:
    This work is supported by National Natural Science Foundation of China (Research on Simulation of Harmonic Characteristics of Power Transformer and Effective Algorithm of Harmonic Magnetic Loss, No.51677052), Science & Technology Plan Projects of Hebei Province (Research on Key Technology of Power Quality Comprehensive Optimization Device in Distribution Network, No.16211827), Science & Technology Research Project of Colleges and Universities in Hebei Province (Research on Flexible Planning and Operation Optimization Control Strategy of AC-DC Hybrid System with New Energy Power Generation, No.ZD2020133)

Abstract: As the key device of the hybrid microgrid, the interlinking converter is related to the efficiency and reliability of the microgrid operation. Based on the normalized droop control, a dual-threshold window control strategy for two-stage interlinking converter with an energy storage system is designed. Based on the switch-on and switch-off conditions of the interlinking converter, and integrates the control of the energy storage unit based on the SOC, a dual-threshold window control strategy combining the switch-on threshold window and the switch-off threshold window is formed to realize the control of the interlinking converter and can realize the secondary opening and closing of the energy storage system. The simulation results show that the converter not only realizes bidirectional power control but also avoids the repeated switching between rectification and inverter of the interlinking converter, and also solves the problem of repeated switching caused by the single-threshold control strategy cutting off large power flow. Each unit in the energy storage system distributes power according to the SOC, which further broadens the power adjustable range of the interlinking converter.

Key words: hybrid microgrid, interlinking converter, dual threshold window, power control