DocumentCode
1795661
Title
The fair distribution of power to electric vehicles: An alternative to pricing
Author
Yingjie Zhou ; Maxemchuk, Nicholas ; Xiangying Qian ; Chen Wang
Author_Institution
Coll. of Comput. Sci., Sichuan Univ., Chengdu, China
fYear
2014
fDate
3-6 Nov. 2014
Firstpage
686
Lastpage
691
Abstract
As the popularity of electric vehicles increases, the demand for more power can increase more rapidly than our ability to install additional generating capacity. In the long term we expect that the supply and demand will become balanced. However, in the interim the rate at which electric vehicles can be deployed will depend on our ability to charge these vehicles without inconveniencing their owners. In this paper, we investigate using fairness mechanisms to distribute power to electric vehicles on a smart grid. We assume that during peak demand there is insufficient power to charge all the vehicles simultaneously. In each five minute interval of time we select a subset of the vehicles to charge, based upon information about the vehicles. We evaluate the selection mechanisms using published data on the current demand for electric power as a function of time of day, current driving habits for commuting, and the current rates at which electric vehicles can be charged on home outlets. We found that conventional selection strategies, such as first-come-first-served or round robin, may delay a significant fraction of the vehicles by more than two hours, even when the total available power over the course of a day is two or three times the power required by the vehicles. However, a selection mechanism that minimizes the maximum delay can reduce the delays to a few minutes, even when the capacity available for charging electric vehicles exceeds their requirements by as little as 5%.
Keywords
electric vehicles; power system economics; pricing; smart power grids; driving habits; electric vehicles; fairness mechanisms; peak demand; power distribution; power fair distribution; pricing alternative; smart power grid; time of day function; Batteries; Delays; Electric vehicles; Pricing; Round robin; Smart grids;
fLanguage
English
Publisher
ieee
Conference_Titel
Smart Grid Communications (SmartGridComm), 2014 IEEE International Conference on
Conference_Location
Venice
Type
conf
DOI
10.1109/SmartGridComm.2014.7007727
Filename
7007727
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