An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy

Nowadays, there is a conflict between the rapidly increasing demand for electricity and the requirement for reducing dependence on fossil fuel to decrease the greenhouse gas emissions. Proper utilization of renewable energy such as wind energy is proposed as an efficient solution to address this pro...

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Main Authors: Li, Yifan, Kaewpuang, Rakpong, Wang, Ping, Niyato, Dusit, Han, Zhu
Other Authors: School of Computer Engineering
Format: Conference or Workshop Item
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/95977
http://hdl.handle.net/10220/12959
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-959772020-05-28T07:17:36Z An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy Li, Yifan Kaewpuang, Rakpong Wang, Ping Niyato, Dusit Han, Zhu School of Computer Engineering IEEE Conference on Computer Communications Workshops (2012 : Orlando, Florida, US) Nowadays, there is a conflict between the rapidly increasing demand for electricity and the requirement for reducing dependence on fossil fuel to decrease the greenhouse gas emissions. Proper utilization of renewable energy such as wind energy is proposed as an efficient solution to address this problem. However, due to the high inter-temporal variation and limited predictability, it is difficult to make full use of renewable energy as supplement to the conventional thermal power plants in smart grid. In this paper, we provide an energy efficient solution to solve this problem: the integration of Pug-In-Hybrid Electric Vehicle (PHEV). Through proper charging and discharging processes, the PHEV fleet can act as energy storage when there is excess renewable energy, while in case of energy shortage, the energy can be properly returned to the grid. Optimization models based on stochastic programming are developed for both the cases without PHEV fleet and with PHEV fleet, while various uncertainties such as power price, renewable power and user demand are taken into account. By solving the two stochastic programming problems, the optimal power management solutions are obtained, and the numerical results show that the integration of PHEV can effectively reduce the energy to be generated by conventional thermal power plants, and as a result, the overall energy generation cost can be significantly reduced. 2013-08-02T08:15:42Z 2019-12-06T19:23:57Z 2013-08-02T08:15:42Z 2019-12-06T19:23:57Z 2012 2012 Conference Paper https://hdl.handle.net/10356/95977 http://hdl.handle.net/10220/12959 10.1109/INFCOMW.2012.6193522 en
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description Nowadays, there is a conflict between the rapidly increasing demand for electricity and the requirement for reducing dependence on fossil fuel to decrease the greenhouse gas emissions. Proper utilization of renewable energy such as wind energy is proposed as an efficient solution to address this problem. However, due to the high inter-temporal variation and limited predictability, it is difficult to make full use of renewable energy as supplement to the conventional thermal power plants in smart grid. In this paper, we provide an energy efficient solution to solve this problem: the integration of Pug-In-Hybrid Electric Vehicle (PHEV). Through proper charging and discharging processes, the PHEV fleet can act as energy storage when there is excess renewable energy, while in case of energy shortage, the energy can be properly returned to the grid. Optimization models based on stochastic programming are developed for both the cases without PHEV fleet and with PHEV fleet, while various uncertainties such as power price, renewable power and user demand are taken into account. By solving the two stochastic programming problems, the optimal power management solutions are obtained, and the numerical results show that the integration of PHEV can effectively reduce the energy to be generated by conventional thermal power plants, and as a result, the overall energy generation cost can be significantly reduced.
author2 School of Computer Engineering
author_facet School of Computer Engineering
Li, Yifan
Kaewpuang, Rakpong
Wang, Ping
Niyato, Dusit
Han, Zhu
format Conference or Workshop Item
author Li, Yifan
Kaewpuang, Rakpong
Wang, Ping
Niyato, Dusit
Han, Zhu
spellingShingle Li, Yifan
Kaewpuang, Rakpong
Wang, Ping
Niyato, Dusit
Han, Zhu
An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy
author_sort Li, Yifan
title An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy
title_short An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy
title_full An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy
title_fullStr An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy
title_full_unstemmed An energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy
title_sort energy efficient solution : integrating plug-in hybrid electric vehicle in smart grid with renewable energy
publishDate 2013
url https://hdl.handle.net/10356/95977
http://hdl.handle.net/10220/12959
_version_ 1681059294770888704