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Electric Vehicle Charging and Discharging Strategy for Distribution Networks Considering Supply and Demand Side Benefits and Three-Phase Imbalance Management
QIN Jinyu, LIU Shenquan, ZHOU Yuyan, LIANG Yuansheng, WANG Longjun, WANG Gang
Electric Power Construction ›› 2026, Vol. 47 ›› Issue (2) : 84-100.
PDF(7687 KB)
PDF(7687 KB)
Electric Vehicle Charging and Discharging Strategy for Distribution Networks Considering Supply and Demand Side Benefits and Three-Phase Imbalance Management
[Objective] The large-scale connection of electric vehicles (EVs) and distributed power sources has exacerbated the three-phase imbalance in distribution networks,and the market-driven orderly charging and discharging of EVs is one of the initiatives to manage the three-phase imbalance,but the traditional management strategy does not take into account the benefits of both operators and users. [Methods] In this regard,this paper proposes a two-stage optimization strategy for EV charging and discharging that takes into account the benefits of both supply and demand sides and the three-phase imbalance management of distribution networks. First,the scheduling incentive mechanism and the user response willingness assessment method are proposed; Second,a two-stage optimization model is established for the day-ahead and intraday stages,where the scheduling parameters are configured based on the management objectives and costs in the day-ahead stage,and the EV charging and discharging strategy is derived by combining the users' benefits and the actual imbalance degree in the intraday stage; Finally,the EV charging and discharging strategy is validated based on the IEEE 13-node arithmetic case for simulation. [Results] The results show that the proposed strategy can effectively reduce the overall voltage imbalance of distribution networks. And compared with the single-objective strategy,in Option 2,the user charging satisfaction indexes are improved by 24.3% and 42.8%,respectively,and the operator realizes arbitrage; in Option 1,the satisfaction indexes are further improved,the operator's revenue is increased by a factor of 3.84,and robust is shown in different operating scenarios. [Conclusions] The proposed strategy can meet the imbalance management needs of operators while taking into account the economic benefits of both the supply and demand sides,providing a flexible and efficient imbalance management solution for distribution networks with a high EV penetration.
electric vehicles / three-phase imbalance / response willingness / fuzzy assessment / scheduling parameters
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The transition from internal combustion engines to electric vehicles (EVs) has received significant attention and investment due to its potential in reducing greenhouse gas emissions. The integration of EVs into electric and transport systems presents both benefits and challenges in energy management. The scheduling of EV charging can alleviate congestion in the electric system and reduce waiting times for EV owners. The use of renewable energy sources (RESs) for EV charging and supporting the grid can help mitigate the uncertainty of these energy resources. Vehicle-to-grid (V2G) technology can be used as an alternative approach in the event of sudden high consumption of the grid. Additionally, cost minimization through large-scale coordinated planning is crucial for the future of e-mobility systems. This review paper focuses on the latest trends considering the various approaches and features in coordinated EV scheduling, as well as the influence of different stakeholders, categorized as single- and multiple-charging stations (CS) and aggregator levels. By implementing coordinated EV scheduling, various methods are presented to better manage the needs and satisfaction of EV owners as well as the profit of CS and the market trends of e-mobility systems. In this regard, EV charging strategies considering V2G, uncertainty evaluation of parameters, coordinated charging management, congestion of CSs and electrical lines, route mapping, and technical and economic aspects of the system hierarchy, including consumers, CSs and aggregators, are reviewed and discussed.
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