Service equilibrium of urban transportation energy supply station based on cooperative game

Xian-long Ge, MuShun Xu, Bo Wang, Zuo-fa Yin
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Abstract

PurposeAs of December 2022, there were 119,000 gas stations, 10,800 gas stations and 4,488,000 charging piles nationwide, while the number of vehicles reached 312 million, including 11.49 million new energy vehicles. The imbalance between transportation energy supply and energy replenishment demand leads to crowded queues of vehicles at some stations and idle resources in others. How to reduce the phenomenon of large queues and improve the utilization rate of idle resources is the key to alleviating the imbalance between supply and demand.Design/methodology/approachTherefore, from the perspective of spatio-temporal equilibrium of urban transportation energy supply stations, multi-energy supply station cooperation is established in view of the phenomenon of large spatio-temporal differences among different energy supply stations, and corresponding inducing strategies are adopted for energy supplement vehicles in the road network, so that part of queued users go to energy supply stations with fewer vehicles, so as to balance the supply and demand of transportation energy in the region. On this basis, the income distribution of urban transportation energy supply station is discussed.FindingsThe total revenue after the cooperation was 13,095, an increase of 22.9%. Secondly, in terms of distribution rationality, three impact factors are selected and Shapley correction value is used to distribute the total income. Compared with independent operation, both sites have a certain degree of increase.Originality/valueTraffic congestion at energy supply stations is closely related to the number, location and number of vehicles at energy supply stations. Therefore, using a cooperative approach of energy trading cannot solve the queuing problem. In addition, there are a few research results on the equalization of energy supply station services considering time-of-use pricing. However, these studies do not consider the vehicular grooming at congested stations. As far as the authors know, there are no relevant research results in the research on the service equilibrium of energy supply stations based on cooperative games.
基于合作博弈的城市交通能源供应站服务均衡
目的 截至 2022 年 12 月,全国共有加油站 11.9 万座、加气站 1.08 万座、充电桩 448.8 万个,汽车保有量达 3.12 亿辆,其中新能源汽车 1149 万辆。交通能源供应与能源补充需求的不平衡,导致一些站点车辆拥挤排队,另一些站点资源闲置。如何减少大排长龙现象,提高闲置资源的利用率,是缓解供需失衡的关键。设计/方法/途径因此,从城市交通能源供应站时空均衡的角度出发,针对不同能源供应站时空差异较大的现象,建立多能源供应站合作,对路网中的能源补充车辆采取相应的诱导策略,使部分排队用户前往车辆较少的能源供应站,从而平衡区域内交通能源的供需。在此基础上,探讨城市交通能源供应站的收入分配问题。研究结果合作后总收入为 13095,同比增长 22.9%。其次,在分配合理性方面,选取三个影响因素,利用夏普利修正值对总收入进行分配。原创性/价值能源供应站的交通拥堵与能源供应站的数量、位置和车辆数量密切相关。因此,采用能源交易的合作方式无法解决排队问题。此外,也有一些关于考虑使用时间定价的能源供应站服务均等化的研究成果。然而,这些研究并没有考虑拥堵站点的车辆疏导问题。据作者所知,目前还没有基于合作博弈的能源供应站服务均衡的相关研究成果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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