Convex modeling for optimal battery sizing and control of an electric variable transmission powertrain

This paper provides convex modeling steps for the problem of optimal battery sizing and energy management of a plug-in hybrid electric vehicle with an electric variable transmission. Optimal energy management is achieved by a switched model control, with driving modes identified by the engine on/off...

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Main Authors: Ma Zetao, Murgovski Nikolce, Egardt Bo, Cui Shumei
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:Oil & Gas Science and Technology
Online Access:https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst180284/ogst180284.html
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spelling doaj-1c86b5698b5f4f518c6b7846addc92c92021-03-02T10:23:54ZengEDP SciencesOil & Gas Science and Technology1294-44751953-81892019-01-01742510.2516/ogst/2018104ogst180284Convex modeling for optimal battery sizing and control of an electric variable transmission powertrainMa ZetaoMurgovski NikolceEgardt BoCui ShumeiThis paper provides convex modeling steps for the problem of optimal battery sizing and energy management of a plug-in hybrid electric vehicle with an electric variable transmission. Optimal energy management is achieved by a switched model control, with driving modes identified by the engine on/off state. In pure electric mode, convex optimization is used to find the optimal torque split between two electric machines, in order to maximize powertrain efficiency. In hybrid mode, optimization is performed in a bilevel program. One level optimizes speed of a compound unit that includes the engine and electric machines. Another level optimizes the power split between the compound unit and the battery. The proposed method is used to minimize the total cost of ownership of a passenger vehicle for a daily commuter, including costs for battery, fossil fuel and electricity.https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst180284/ogst180284.html
collection DOAJ
language English
format Article
sources DOAJ
author Ma Zetao
Murgovski Nikolce
Egardt Bo
Cui Shumei
spellingShingle Ma Zetao
Murgovski Nikolce
Egardt Bo
Cui Shumei
Convex modeling for optimal battery sizing and control of an electric variable transmission powertrain
Oil & Gas Science and Technology
author_facet Ma Zetao
Murgovski Nikolce
Egardt Bo
Cui Shumei
author_sort Ma Zetao
title Convex modeling for optimal battery sizing and control of an electric variable transmission powertrain
title_short Convex modeling for optimal battery sizing and control of an electric variable transmission powertrain
title_full Convex modeling for optimal battery sizing and control of an electric variable transmission powertrain
title_fullStr Convex modeling for optimal battery sizing and control of an electric variable transmission powertrain
title_full_unstemmed Convex modeling for optimal battery sizing and control of an electric variable transmission powertrain
title_sort convex modeling for optimal battery sizing and control of an electric variable transmission powertrain
publisher EDP Sciences
series Oil & Gas Science and Technology
issn 1294-4475
1953-8189
publishDate 2019-01-01
description This paper provides convex modeling steps for the problem of optimal battery sizing and energy management of a plug-in hybrid electric vehicle with an electric variable transmission. Optimal energy management is achieved by a switched model control, with driving modes identified by the engine on/off state. In pure electric mode, convex optimization is used to find the optimal torque split between two electric machines, in order to maximize powertrain efficiency. In hybrid mode, optimization is performed in a bilevel program. One level optimizes speed of a compound unit that includes the engine and electric machines. Another level optimizes the power split between the compound unit and the battery. The proposed method is used to minimize the total cost of ownership of a passenger vehicle for a daily commuter, including costs for battery, fossil fuel and electricity.
url https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst180284/ogst180284.html
work_keys_str_mv AT mazetao convexmodelingforoptimalbatterysizingandcontrolofanelectricvariabletransmissionpowertrain
AT murgovskinikolce convexmodelingforoptimalbatterysizingandcontrolofanelectricvariabletransmissionpowertrain
AT egardtbo convexmodelingforoptimalbatterysizingandcontrolofanelectricvariabletransmissionpowertrain
AT cuishumei convexmodelingforoptimalbatterysizingandcontrolofanelectricvariabletransmissionpowertrain
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