EV charging charging guidance system framework.
Abstract:
In view of the existing problems that multiple vehicles interaction in the selection of fast charging stations for electric vehicles (EVs) and the equalizing the service ...Show MoreNotes: IEEE Xplore Notice to Reader "Dynamic Response Characteristics of Fast Charging Station-EVs on Interaction of Multiple Vehicles" by Xiaoou Liu DOI: 10.1109/ACCESS.2020.2977460 It is recommended by the Editor-in-Chief of IEEE Access that the above-mentioned article should not be considered for citation purposes. IEEE policy requires that consent to publish be obtained from all authors prior to publication. This paper was submitted by Xiaoou Liu without the consent of co-author Hong Liu, who was the main contributor of the work. We regret any inconvenience this may have caused. Prof. Derek Abbott Editor-in-Chief IEEE Access
Metadata
Abstract:
In view of the existing problems that multiple vehicles interaction in the selection of fast charging stations for electric vehicles (EVs) and the equalizing the service capability by multiple stations game in station-EVs interaction, a dynamic response strategy of fast charging station-EVs considering interaction of multiple vehicles is proposed. According to this, the charging scheme of EVs and the dynamic service fee of charging stations are decided. Firstly, the charging guidance framework of station-EVs interaction is proposed to describe the information flow relationship for vehicle, station, road and intelligent transportation system (ITS). Secondly, in order to meet the diversified needs of car owners in charging selection, a charging navigation model is established. Considering the impact of dynamic path travel time, a dynamic path selection model of urban road network is established based on the road segment transmission model. Thirdly, in order to accurately analyze the interaction process between vehicles, a charging decision-making method is proposed considering the dynamic evolution of EVs, which reflects the station selection probability of different positions during driving. Fourthly, according to the queuing time of the charging station, the service fee of the charging station is dynamically adjusted to optimize the service capacity of the charging station, and the multi-agent stackelberg game model is established by combining the charging station selection of EVs with the dynamic service fee of charging station. Finally, Sioux Falls urban road network system is used as an example to analyze the path selection, dynamic decision of charging station selection and service fee, and station-EVs interaction strategy. The results show that this method improves the efficiency of electric vehicle charging station searching, guides EVs in the road network to charge orderly, balances the charging load between charging stations and optimizes the service capacit...
Notes: IEEE Xplore Notice to Reader "Dynamic Response Characteristics of Fast Charging Station-EVs on Interaction of Multiple Vehicles" by Xiaoou Liu DOI: 10.1109/ACCESS.2020.2977460 It is recommended by the Editor-in-Chief of IEEE Access that the above-mentioned article should not be considered for citation purposes. IEEE policy requires that consent to publish be obtained from all authors prior to publication. This paper was submitted by Xiaoou Liu without the consent of co-author Hong Liu, who was the main contributor of the work. We regret any inconvenience this may have caused. Prof. Derek Abbott Editor-in-Chief IEEE Access
EV charging charging guidance system framework.
Published in: IEEE Access ( Volume: 8)