Electric vehicle charging infrastructure planning in a road network

被引:82
|
作者
Micari, Salvatore [1 ]
Polimeni, Antonio [2 ]
Napoli, Giuseppe [1 ]
Andaloro, Laura [1 ]
Antonucci, Vincenzo [1 ]
机构
[1] Natl Res Council Italy, Inst Adv Energy Technol Nicola Giordano, Salita S Lucia Contesse 5, I-98126 Messina, Italy
[2] Univ Rome, Dept Enterprise Engn Tor Vergata, Viale Politecn 1, I-00133 Rome, Italy
来源
关键词
Electric vehicles (EVs); Electric charging station network; Location problem; ALTERNATIVE-FUEL STATIONS; REFUELING LOCATION MODEL; BUSINESS MODELS; POWER; DEPLOYMENT; FRAMEWORK; BEHAVIOR; DESIGN; EUROPE; ENERGY;
D O I
10.1016/j.rser.2017.05.022
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The implementation of a charging infrastructure network is the necessary prerequisite for the diffusion of Electric Vehicles (EVs). In this paper a methodology to calculate the required number of charging stations for EVs and to set their position in a road network is proposed. The aim is to planning the distribution of services area to host charging infrastructures. Using the demand (the flow of EVs) and the supply (the road network where they will be positioned) through a two-level model were the locations initially identified (first level) and thereafter the number of charging stations for each service area (second level) evaluated. The paper deals with the intersection of three main topics: the vehicle technologies (engine and battery pack specifications), the charging station characteristics and the EVs flow. After verifying the model and the solution procedure on a test road network, the methodology is applied in a high dimension case, considering the Italian highway network.
引用
收藏
页码:98 / 108
页数:11
相关论文
共 50 条
  • [31] Electric vehicle fast charging infrastructure planning in urban networks considering daily travel and charging behavior
    Kavianipour, Mohammadreza
    Fakhrmoosavi, Fatemeh
    Singh, Harprinderjot
    Ghamami, Mehrnaz
    Zockaie, Ali
    Ouyang, Yanfeng
    Jackson, Robert
    TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2021, 93 (93)
  • [32] The future of electric vehicle charging infrastructure comment
    Afridi, Khurram
    NATURE ELECTRONICS, 2022, 5 (02) : 62 - 64
  • [33] Lightning Protection of Electric Vehicle Charging Infrastructure
    Zhao, Jing
    Zhang, Hongwen
    Lu, Qiang
    Xu, Changquan
    Yang, Guohua
    2016 33RD INTERNATIONAL CONFERENCE ON LIGHTNING PROTECTION (ICLP), 2016,
  • [34] Impact of public electric vehicle charging infrastructure
    Levinson, Rebecca S.
    West, Todd H.
    TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2018, 64 : 158 - 177
  • [35] Smart Electric Vehicle Charging Infrastructure Overview
    Chynoweth, Joshua
    Chung, Ching-Yen
    Qiu, Charlie
    Chu, Peter
    Gadh, Rajit
    2014 IEEE PES INNOVATIVE SMART GRID TECHNOLOGIES CONFERENCE (ISGT), 2014,
  • [36] Electric vehicle charging infrastructure: positioning in India
    Kore, Hemant Harishchandra
    Koul, Saroj
    MANAGEMENT OF ENVIRONMENTAL QUALITY, 2022, 33 (03) : 776 - 799
  • [37] Electric Vehicle Charging Station Infrastructure: A Review
    Jog, Pranjal
    Shete, Suwarna
    Kumawat, R. K.
    Palwalia, D. K.
    6TH IEEE INTERNATIONAL CONFERENCE ON RECENT ADVANCES AND INNOVATIONS IN ENGINEERING (ICRAIE), 2021,
  • [38] ANALYSIS ON ELECTRIC VEHICLE CHARGING INFRASTRUCTURE IN LATVIA
    Putnieks, Uldis
    Gailis, Maris
    Kancevica, Liene
    11TH INTERNATIONAL SCIENTIFIC CONFERENCE ON ENGINEERING FOR RURAL DEVELOPMENT, VOL 11, 2012, : 400 - 405
  • [39] Cybersecurity for Electric Vehicle Fast Charging Infrastructure
    Sanghvi, Anuj
    Markel, Tony
    2021 IEEE TRANSPORTATION ELECTRIFICATION CONFERENCE & EXPO (ITEC), 2021, : 573 - 576
  • [40] Mesh Network Design for Smart Charging Infrastructure and Electric Vehicle Remote Monitoring
    Shepelev, Aleksey
    Chung, Ching-Yen
    Chu, Chi-Cheng
    Gadh, Rajit
    2013 INTERNATIONAL CONFERENCE ON ICT CONVERGENCE (ICTC 2013): FUTURE CREATIVE CONVERGENCE TECHNOLOGIES FOR NEW ICT ECOSYSTEMS, 2013, : 250 - 255