Spatial and Temporal Model for Electric Vehicle Rapid Charging Demand

被引:0
|
作者
Zhou, Zhili [1 ]
Lin, Tachun [2 ]
机构
[1] IBM Res, IBM Res Collaboratory, Singapore 486048, Singapore
[2] Cameron Univ, Dept Comp & Technol, Lawton, OK 73505 USA
关键词
electric vehicle; charging demand; energy consumption; energy management; queuing model;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, we present a spatial and temporal model of electric vehicle (EV) charging demand for rapid charging stations located in the urban area. For this problem three lines of investigations have been pursued in the literature: the first one is based on an assumption of a fixed charging station and charging time during the off-peak hours for EV charging demand; the second scenario has limited charging stations at typical locations instead of a mathematical model; and the third one is for charging demands in one way system, such as charging stations nearby highway exists. Hence, from the perspective of a distributed urban transportation system, EV charging demand still has unidentified quantity which varies with respect to charging station location and charging time. In this paper we presents mathematical models for EV charging demand at rapid charging stations. The rapid charging station is formulated as a M/M/s queuing service system. A traffic flow based model generates the arrival rate for EVs to arrive the charging station. The computational results demonstrate that the proposed model is able to estimate the dynamic spatio-temporal charging demands in the large-scale urban traffic environment.
引用
收藏
页码:345 / 348
页数:4
相关论文
共 50 条
  • [41] A temporal and spatial electric vehicle charging optimization scheme with DSO-EVA coordination framework
    Xiao, Tingting
    Peng, Yonggang
    Chen, Chunyu
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2024, 156
  • [42] Spatial and temporal patterns of electric vehicle charging station utilization: a nationwide case study of Switzerland
    Gellrich, Mario
    Block, Andreas
    Leikert-Boehm, Ninja
    ENVIRONMENTAL RESEARCH: INFRASTRUCTURE AND SUSTAINABILITY, 2022, 2 (02):
  • [43] The impact of plug-in behavior on the spatial-temporal flexibility of electric vehicle charging load
    Gschwendtner, Christine
    Knoeri, Christof
    Stephan, Annegret
    SUSTAINABLE CITIES AND SOCIETY, 2023, 88
  • [44] A Spatial-temporal Electric Vehicle Charging Load Forecasting Method Considering the Coordination among the Multiple Charging Behaviors
    Tang, Shuyi
    Mu, Yunfei
    Zhou, Yu
    Dong, Xiaohong
    Jia, Hongjie
    2021 POWER SYSTEM AND GREEN ENERGY CONFERENCE (PSGEC), 2021, : 629 - 634
  • [45] Spatio-temporal modelling of electric vehicle charging demand and impacts on peak household electrical load
    Paevere, Phillip
    Higgins, Andrew
    Ren, Zhengen
    Horn, Mark
    Grozev, George
    McNamara, Cheryl
    SUSTAINABILITY SCIENCE, 2014, 9 (01) : 61 - 76
  • [46] Predicting electric vehicle charging demand using a heterogeneous spatio-temporal graph convolutional network
    Wang, Shengyou
    Chen, Anthony
    Wang, Pinxi
    Zhuge, Chengxiang
    TRANSPORTATION RESEARCH PART C-EMERGING TECHNOLOGIES, 2023, 153
  • [47] Spatio-temporal modelling of electric vehicle charging demand and impacts on peak household electrical load
    Phillip Paevere
    Andrew Higgins
    Zhengen Ren
    Mark Horn
    George Grozev
    Cheryl McNamara
    Sustainability Science, 2014, 9 : 61 - 76
  • [48] Optimal Electric Vehicle Charging Schedule for Demand Side Management
    Shinde, Priyanka
    Swarup, K. Shanti
    2016 FIRST INTERNATIONAL CONFERENCE ON SUSTAINABLE GREEN BUILDINGS AND COMMUNITIES (SGBC), 2016,
  • [49] The Effects of Climate and Climate Change on Electric Vehicle Charging Demand
    Henrique, Daniel B.
    Kushner, Paul J.
    Zhang, Xuesong
    Wang, An
    Lagacé, Elise
    Lee, Kyup
    Posen, I. Daniel
    SSRN, 2022,
  • [50] Joint Rate Control and Demand Balancing for Electric Vehicle Charging
    Kong, Fanxin
    Liu, Xue
    Lee, Insup
    2018 IEEE/ACM THIRD INTERNATIONAL CONFERENCE ON INTERNET-OF-THINGS DESIGN AND IMPLEMENTATION (IOTDI 2020), 2018, : 213 - 224