DocumentCode :
3599766
Title :
POC: An Optimization Strategy of EV Efficient Travelling
Author :
Jiayuan Li ; Jinglin Li ; Zhihan Liu
Author_Institution :
Networking & Switching Technol., Beijing Univ. of Posts & Telecommun., Beijing, China
fYear :
2014
Firstpage :
42
Lastpage :
47
Abstract :
The popularity of electric vehicles (EVs) provides great help to solve the increasingly serious energy issues and environmental problems, but it also has limitation such as short driving range and long charging time. This paper proposed an optimization strategy for EVs to travel more efficiently called planed ordered charging (POC for short), that is, spending more time on driving and necessary charging instead of waiting or overcharge. An energy reachable graph is built firstly to protect vehicles from breaking down in the midway. Travel time, including driving time, charging time and waiting time, is taken as the optimization goal. The modeling and solution of travel time is presented. One of the most important contributions of this paper is the proposal of charging station load and how it can be calculated, which well describes waiting time from a macro view. Besides, reservation mechanism for charging is also introduced to achieve the global optimization. Then the planning of efficient travel can be converted to a general graph theory problem by putting time cost onto edge weight of the graph. According to the simulation and experiment, the strategy proposed in this paper is superior to other compared strategies in many aspects.
Keywords :
battery powered vehicles; network theory (graphs); optimisation; planning; EV efficient travelling; POC; charging station load; charging time; driving time; efficient travel planning; electric vehicles; energy reachable graph; global optimization; planed ordered charging; reservation mechanism; time cost; vehicle protection; waiting time; Charging stations; Energy consumption; Load modeling; Optimization; Path planning; Real-time systems; Vehicles; charging reservation; charging station load; efficient travel strategy; electric vehicles (EVs); simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Services Computing Conference (APSCC), 2014 Asia-Pacific
Type :
conf
DOI :
10.1109/APSCC.2014.17
Filename :
7175493
Link To Document :
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