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A Multi-period Coordinated Scheduling System for Local Distribution Networks Centered on the Flexibility of Electric Vehicles

  • Mingcai Wang,
  • Liang Zhu,
  • Yanan Li,
  • Jiran Zhu,
  • Xueying Yan,
  • Jingping Zhang,
  • Qi Jia,
  • Lei Ren

摘要

This paper designs a multi-period coordinated scheduling system centered on the flexibility of electric vehicles in a local distribution network. This software coordinates scheduling for microgrid operations across three time scales: day-ahead, intra-day, and real-time. Day-ahead scheduling involves formulating plans for power generation, energy storage, and electricity consumption for the following day, optimizing costs and smoothing loads. Intra-day adjustments are made based on actual conditions to balance costs and stability, and correct predictive deviations. Real-time fine-tuning is conducted at a granularity of 15 min, utilizing electric vehicle charging and discharging to ensure stability and minimize deviations from intra-day plans.