On Charging Scheduling Optimization for a Wirelessly Charged Electric Bus System

被引:67
作者
Yang, Chao [1 ,2 ]
Lou, Wei [2 ]
Yao, Junmei [2 ]
Xie, Shengli [1 ]
机构
[1] Guangdong Univ Technol, Sch Automat, Guangzhou 510006, Guangdong, Peoples R China
[2] Hong Kong Polytech Univ, Dept Comp, Hong Kong, Hong Kong, Peoples R China
基金
中国国家自然科学基金; 美国国家科学基金会;
关键词
Public transportation system; wirelessly charged electric bus; scheduling optimization; DEMAND-SIDE MANAGEMENT; CHARGING/DISCHARGING COORDINATION; NETWORKS; VEHICLES; FORMULATION; AGGREGATOR; PREDICTION; STATION; COST;
D O I
10.1109/TITS.2017.2740329
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The introduction of wirelessly charged electric buses (WCEBs) into current public transportation system attracts many attentions in recent years. As the wireless charging technology enables energy transfer from power transmitters to electric vehicles (EVs) on road, it provides a promising solution to reduce the huge cost of battery with large size and long charging time, which are two critical impediments for EV applications. However, the system cost of WCEBs is huge. Under the dynamic electricity demands and the fluctuating electricity prices, the system operating electricity cost highly depends on the charging schedule. In this paper, according to the typical day-ahead electricity market, we explore an optimal charging scheduling scheme in a WCEB system to minimize the system operating electricity cost, while the characteristic of WCEBs is considered. The price of electricity fluctuates with the accumulated energy demands in both spatial and temporal domains. We first present a day-ahead reserved wholesale electricity determination algorithm, in which, the average speeds of WCEBs are presumed. Then, we propose an optimal charging scheduling algorithm, in which the WCEB charging schedules in slots are optimized sequentially. Both the reserved electricity and the predicted speeds in the slot are used. Simulation results demonstrate the efficiency of our proposed WCEB charging schedules.
引用
收藏
页码:1814 / 1826
页数:13
相关论文
共 40 条
[1]   Spatial and Temporal Model of Electric Vehicle Charging Demand [J].
Bae, Sungwoo ;
Kwasinski, Alexis .
IEEE TRANSACTIONS ON SMART GRID, 2012, 3 (01) :394-403
[2]  
Boyd L., 2004, CONVEX OPTIMIZATION
[3]  
Dai W., 2013, Proc. Int. Conf. Neural Inf. Process. Sys, P1
[4]   Real-Time Coordination of Plug-In Electric Vehicle Charging in Smart Grids to Minimize Power Losses and Improve Voltage Profile [J].
Deilami, Sara ;
Masoum, Amir S. ;
Moses, Paul S. ;
Masoum, Mohammad A. S. .
IEEE TRANSACTIONS ON SMART GRID, 2011, 2 (03) :456-467
[5]   The impact of plug-in hybrid electric vehicles on distribution networks: A review and outlook [J].
Green, Robert C., II ;
Wang, Lingfeng ;
Alam, Mansoor .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2011, 15 (01) :544-553
[6]   THE ALLOCATION OF BUSES IN HEAVILY UTILIZED NETWORKS WITH OVERLAPPING ROUTES [J].
HAN, AF ;
WILSON, NHM .
TRANSPORTATION RESEARCH PART B-METHODOLOGICAL, 1982, 16 (03) :221-232
[7]  
Hess A., 2012, Proceedings of the 1st Workshop on Urban Networking, P1, DOI DOI 10.1145/2413236.2413238
[8]   Matching EV Charging Load With Uncertain Wind: A Simulation-Based Policy Improvement Approach [J].
Huang, Qilong ;
Jia, Qing-Shan ;
Qiu, Zhifeng ;
Guan, Xiaohong ;
Deconinck, Geert .
IEEE TRANSACTIONS ON SMART GRID, 2015, 6 (03) :1425-1433
[9]   System Architecture and Mathematical Models of Electric Transit Bus System Utilizing Wireless Power Transfer Technology [J].
Jang, Young Jae ;
Suh, Eun Suk ;
Kim, Jong Woo .
IEEE SYSTEMS JOURNAL, 2016, 10 (02) :495-506
[10]   System optimization of the On-Line Electric Vehicle operating in a closed environment [J].
Jang, Young Jae ;
Jeong, Seungmin ;
Ko, Young Dae .
COMPUTERS & INDUSTRIAL ENGINEERING, 2015, 80 :222-235