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Modeling of Electric Vehicle Charging Systems in Communications Enabled Smart Grids

Authors
Baek, Seung JunKim, DaeheeOh, Seong-JunJun, Jong-Arm
Issue Date
8월-2011
Publisher
IEICE-INST ELECTRONICS INFORMATION COMMUNICATIONS ENG
Keywords
queuing systems; time-scale decomposition; quality of service; plug-in hybrid electric vehicles
Citation
IEICE TRANSACTIONS ON INFORMATION AND SYSTEMS, v.E94D, no.8, pp.1708 - 1711
Indexed
SCOPUS
Journal Title
IEICE TRANSACTIONS ON INFORMATION AND SYSTEMS
Volume
E94D
Number
8
Start Page
1708
End Page
1711
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/111906
DOI
10.1587/transinf.E94.D.1708
ISSN
1745-1361
Abstract
We consider a queuing model with applications to electric vehicle (EV) charging systems in smart grids. We adopt a scheme where an Electric Service Company (ESCo) broadcasts a one bit signal to EVs, possibly indicating 'on-peak' periods during which electricity cost is high. EVs randomly suspend/resume charging based on the signal. To model the dynamics of EVs we propose an M/M/infinity queue with random interruptions, and analyze the dynamics using time-scale decomposition. There exists a trade-off: one may postpone charging activity to 'off-peak' periods during which electricity cost is cheaper, however this incurs extra delay in completion of charging. Using our model we characterize achievable trade-offs between the mean cost and delay perceived by users. Next we consider a scenario where EVs respond to the signal based on the individual loads. Simulation results show that peak electricity demand can be reduced if EVs carrying higher loads are less sensitive to the signal.
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