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Emerging Technologies for Electric and Hybrid Vehicles
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Energies 2017,10, 5 40. Baronti, F.; Fantechi,G.; Leonardi, E.; Roncella,R.; Saletti,R.Enhancedmodel for lithium-polymer cells including temperature effects. In Proceedings of the IECON2010—36thAnnual Conference on IEEE IndustrialElectronicsSociety,Glendale,AZ,USA,7–10November2010;pp.2329–2333. 41. Lam, L.; Bauer, P.; Kelder, E. A practical circuit-basedmodel for li-ion battery cells in electric vehicle applications. InProceedingsof the2011IEEE33rdInternationalTelecommunicationsEnergyConference (INTELEC),Amsterdam,TheNetherlands,9–13October2011;pp.1–9. 42. Hu,Y.;Wang,Y.-Y.Twotime-scaledbatterymodel identificationwithapplication tobatterystateestimation. IEEETrans. ControlSyst. Technol. 2015,23, 1180–1188. [CrossRef] 43. Li, J.;Mazzola,M.S.Accuratebatterypackmodelingforautomotiveapplications. J.PowerSources2013,237, 215–228. [CrossRef] 44. Widanage,W.;Barai,A.;Chouchelamane,G.;Uddin,K.;McGordon,A.;Marco, J.; Jennings,P.Designand useofmultisinesignals forLi-ionbatteryequivalentcircuitmodelling. Part1: Signaldesign. J.PowerSources 2016,324, 70–78. [CrossRef] 45. Jossen,A.Fundamentalsofbatterydynamics. J.PowerSources2006,154, 530–538. [CrossRef] 46. Hentunen, A.; Lehmuspelto, T.; Suomela, J. Time-domain parameter extractionmethod for thévenin- equivalentcircuitbatterymodels. IEEETrans. EnergyConvers. 2014,29, 558–566. [CrossRef] 47. Petzl, M.; Danzer, M.A. Advancements in OCV measurement and analysis for lithium-ion batteries. IEEETrans. EnergyConvers. 2013,28, 675–681. [CrossRef] 48. Barai, A.; Widanage,W.D.; Marco, J.; McGordon, A.; Jennings, P. A study of the open circuit voltage characterization techniqueandhysteresisassessmentof lithium-ioncells. J.PowerSources2015,295, 99–107. [CrossRef] 49. Hariharan,K.S.;Kumar,V.S.Anonlinearequivalentcircuitmodel for lithiumioncells. J.PowerSources2013, 222, 210–217. [CrossRef] 50. Gong,X.; Xiong,R.;Mi,C.C.Adata-drivenbias-correction-method-based lithium-ionbatterymodeling approachforelectricvehicleapplications. IEEETrans. Ind.Appl. 2016,52, 1759–1765. ©2016bytheauthors. LicenseeMDPI,Basel,Switzerland. Thisarticle isanopenaccess articledistributedunder the termsandconditionsof theCreativeCommonsAttribution (CCBY) license (http://creativecommons.org/licenses/by/4.0/). 178
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Emerging Technologies for Electric and Hybrid Vehicles
Title
Emerging Technologies for Electric and Hybrid Vehicles
Editor
MDPI
Location
Basel
Date
2017
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-03897-191-7
Size
17.0 x 24.4 cm
Pages
376
Keywords
electric vehicle, plug-in hybrid electric vehicle (PHEV), energy sources, energy management strategy, energy-storage system, charging technologies, control algorithms, battery, operating scenario, wireless power transfer (WPT)
Category
Technik
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Emerging Technologies for Electric and Hybrid Vehicles