Dynamic Wireless Charging of Electric Vehicles: Supercapacitor Integration at the Service of Energy Management Optimization

被引:2
作者
Sraidi, Salma [1 ]
Maaroufi, Mohamed [1 ]
机构
[1] Mohamed V Univ, Mohammadia Engn Sch, Res Elect Energy & Command, Rabat, Morocco
来源
ELECTRICA | 2023年 / 23卷 / 03期
关键词
Energy management optimization; dynamic wireless power transfer; electric vehicles; supercapacitor; POWER TRANSFER; FUEL CONSUMPTION; STORAGE SYSTEM; SIMULATION; EMISSIONS; SUPPORT; CAR;
D O I
10.5152/electrica.2023.22014
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
The wide deployment of electric vehicles (EVs) is mainly linked to the extensive development of charging infrastructures. Dynamic wireless power transfer (DWPT) seems to be a viable solution that deals with EV's major challenges such as autonomy. In-motion charging would improve sustainable mobility by reducing storage system weight. However, large power rates are required for such applications since energy transfer must occur quickly and must match the power requirements of various vehicles. The vehicle design, road infrastructure, and electrical network are all affected by this tendency. Power-flow smoothing is essential to eliminate pulsations generated by vehicle motion as well as power peaks caused by the WPT as part of the electrified road system, which have an impact on the total electrical load. In this paper, we present an optimal energy management scheme for the supercapacitor integration in order to meet the WPT demand and reduce the pulsation caused by EV's demand.
引用
收藏
页码:449 / 457
页数:9
相关论文
共 33 条
[1]  
Boyd S., 2004, Convex Optimization, DOI 10.1017/CBO9780511804441
[2]   A load predictive energy management system for supercapacitor-battery hybrid energy storage system in solar application using the Support Vector Machine [J].
Chia, Yen Yee ;
Lee, Lam Hong ;
Shafiabady, Niusha ;
Isa, Dino .
APPLIED ENERGY, 2015, 137 :588-602
[3]   Energy Management Optimization in a Battery/Supercapacitor Hybrid Energy Storage System [J].
Choi, Mid-Eum ;
Kim, Seong-Woo ;
Seo, Seung-Woo .
IEEE TRANSACTIONS ON SMART GRID, 2012, 3 (01) :463-472
[4]   Electric vehicles standards, charging infrastructure, and impact on grid integration: A technological review [J].
Das, H. S. ;
Rahman, M. M. ;
Li, S. ;
Tan, C. W. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2020, 120
[5]  
Dericioğlu Ç, 2018, International Journal of Advances on Automotive and Technology, DOI 10.15659/ijaat.18.01.892
[6]   Review of battery electric vehicle propulsion systems incorporating flywheel energy storage [J].
Dhand, A. ;
Pullen, K. .
INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2015, 16 (03) :487-500
[7]   Fuel consumption and exhaust emissions of diesel vehicles in worldwide harmonized light vehicles test cycles and their sensitivities to eco-driving factors [J].
Gao, Jianbing ;
Chen, Haibo ;
Li, Ying ;
Chen, Junyan ;
Zhang, Yuanjian ;
Dave, Kaushali ;
Huang, Yue .
ENERGY CONVERSION AND MANAGEMENT, 2019, 196 :605-613
[8]   Hybrid Energy Storage System of an Electric Scooter Based on Wireless Power Transfer [J].
Hu, Jia-Sheng ;
Lu, Fei ;
Zhu, Chong ;
Cheng, Chang-Yi ;
Chen, Sin-Li ;
Ren, Tsai-Jiun ;
Mi, Chunting Chris .
IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS, 2018, 14 (09) :4169-4178
[9]   The electric vehicle energy management: An overview of the energy system and related modeling and simulation [J].
Ibrahim, Amier ;
Jiang, Fangming .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2021, 144
[10]   Electric vehicles in car sharing networks - Challenges and simulation model analysis [J].
Illgen, Stefan ;
Hoeck, Michael .
TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2018, 63 :377-387