eBiltegia

    • What is eBiltegia? 
    •   About eBiltegia
    •   Publish your research in open access
    • Open Access at MU 
    •   What is Open Science?
    •   Mondragon Unibertsitatea's Institutional Policy on Open Access to scientific documents and teaching materials
    •   The Library compiles and disseminates your publications

Con la colaboración de:

Euskara | Español | English
  • Contact Us
  • Open Science
  • About eBiltegia
  • Login
View Item 
  •   eBiltegia MONDRAGON UNIBERTSITATEA
  • Conference papers
  • Conference papers - Engineering
  • View Item
  •   eBiltegia MONDRAGON UNIBERTSITATEA
  • Conference papers
  • Conference papers - Engineering
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.
Thumbnail
View/Open
Modular Battery Energy Storage Systems for Available Energy Increase.pdf (1.296Mb)
Full record
Impact

Web of Science   

Google Scholar
Share
EmailLinkedinFacebookTwitter
Save the reference
Mendely

Zotero

untranslated

Mets

Mods

Rdf

Marc

Exportar a BibTeX
Title
Modular Battery Energy Storage Systems for Available Energy Increase
Author
Dorronsoro, Xabier cc
Lopetegi, Iker cc
GARAYALDE, ERIK cc
IRAOLA, UNAI cc
Yeregui, Josu cc
Publication Date
2022
Research Group
Almacenamiento de energía
Version
Postprint
Document type
Conference ObjectConference Object
Language
English
Rights
© 2023 IEEE
Access
Embargoed access
Embargo end date
2025-01-31
URI
https://hdl.handle.net/20.500.11984/6003
Publisher’s version
https://doi.org/10.1109/VPPC55846.2022.10003430
Published at
2022 IEEE Vehicle Power and Propulsion Conference (VPPC)  Merced, California. 1-4 noviembre,
Publisher
IEEE
Keywords
Costs
Prototypes
Propulsion
Electric vehicles ... [+]
Costs
Prototypes
Propulsion
Electric vehicles
Mathematical models
Discharges (electric)
Batteries
ODS 7 Energía asequible y no contaminante [-]
Abstract
The aim of this work is to dive into the available energy of different configurations of battery packs, a vital factor when it comes to improving the driving range of electric vehicles. To that end, t ... [+]
The aim of this work is to dive into the available energy of different configurations of battery packs, a vital factor when it comes to improving the driving range of electric vehicles. To that end, two different storage system topologies are considered: non-modular and modular batteries. Each of them with passive or active balancing strategies. To achieve realistic results, a reduced-order electrochemical model is used. Cell-to-cell capacity variations are introduced to represent non-uniformities inside the battery packs. Although many different capacity distributions might be considered, the scope of this paper has been limited to classical normal distribution. The results of this analysis show that the available energy can be increased using modular battery solutions. [-]
Collections
  • Conference papers - Engineering [453]

Browse

All of eBiltegiaCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsResearch groupsPublished atThis CollectionBy Issue DateAuthorsTitlesSubjectsResearch groupsPublished at

My Account

LoginRegister

Statistics

View Usage Statistics

Harvested by:

OpenAIREBASERecolecta

Validated by:

OpenAIRERebiun
MONDRAGON UNIBERTSITATEA | Library
Contact Us | Send Feedback
DSpace
 

 

Harvested by:

OpenAIREBASERecolecta

Validated by:

OpenAIRERebiun
MONDRAGON UNIBERTSITATEA | Library
Contact Us | Send Feedback
DSpace