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Emerging Technologies for Electric and Hybrid Vehicles
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Energies 2017,10, 616 References 1. Chowdhury,S.;Wheeler,P.;Patel,C.;Gerada,C.AmultilevelconverterwithaïŹ‚oatingbridgeforopen-ended windingmotordriveapplications. IEEETrans. Ind. Electron. 2016,63, 5366–5375. [CrossRef] 2. Loncarski, J.;Leijon,M.;Srndovic,M.;Rossi,C.;Grandi,G.Comparisonofoutputcurrent ripple insingle anddual three-phase inverters forelectricvehiclemotordrives.Energies2015,8, 3832–3848. [CrossRef] 3. Welchko, B.A.; Nagashima, J.M. A comparative evaluation ofmotor drive topologies for low-voltage, high-powerEV/HEVpropulsionsystems. InProceedingsoftheIEEEInternationalSymposiumonIndustrial Electronics,RioDeJaneiro,Brazil, 9–11 June2003;pp.379–384. 4. An,Q.T.; Duan,M.H.; Sun, L.;Wang,G.L. SVPWMstrategyof post-fault reconïŹgureddual inverter in open-endwindingmotordrivesystems.Electron. Lett. 2014,50, 1238–1240. [CrossRef] 5. Engelmann,G.; Kowal,M.; DeDoncker, R.W.Ahighly integrateddrive inverter usingdirect FETs and ceramicdc-linkcapacitors foropen-endwindingmachines inelectricvehicles. InProceedingsof theApplied PowerElectronicsConferenceandExposition,Charlotte,NC,USA,15–19March2015;pp.290–296. 6. Sandulescu,P.;Meinguet,F.;Kestelyn,X.;Semail,E.;Bruyere,E.Control strategies foropen-endwinding drivesoperating in theïŹ‚ux-weakeningregion.PowerElectron. IEEETrans. 2014,29, 4829–4842. [CrossRef] 7. An,Q.;Liu, J.;Peng,Z.;Sun,L.; Sun,L.Dual-spacevectorcontrolofopen-endwindingpermanentmagnet synchronousmotordrive fedbydual inverter. IEEETrans. PowerElectron. 2016,31, 8329–8342. [CrossRef] 8. An,Q.;Sun,L.; Sun,L.Researchonnovelopen-endwindingpermanentmagnetsynchronousmotorvector control systems.Proc. CSEE2015,22, 5891–5898. 9. Park, J.S.;Nam,K.Dual inverter strategyforhighspeedoperationofHEVpermanentmagnetsynchronous motor. In Proceedings of the Industry Applications Conference 2006, IasMeeting, Tampa, FL, USA, 8–12October2006;pp.488–494. 10. Kwak,M.S.; Sul, S.K. Fluxweakeningcontrol of anopenwindingmachinewith isolateddual inverters. In Proceedings of the Industry Applications Conference 2007, Ias Meeting, New Orleans, LA, USA, 23–27September2007;pp.251–255. 11. Rossi,C.;Grandi,G.;Corbelli,P.;Casadei,D.Generationsystemforserieshybridpowertrainbasedonthe dual two-level inverter. InProceedingsof theEuropeanPowerElectronicConferences,Barcelona,Spain, 8–10September2009;pp.1–10. 12. Griva,G.;Oleschuk,V.;Profumo,F.Hybrid tractiondrivewithsymmetrical split-phasemotorcontrolledby synchronizedPWM.InProceedingsof the InternationalSymposiumonPowerElectronics,ElectricalDrives, AutomationandMotion, Ischia, Italy,11–13 June2008;pp.1033–1037. 13. Deng,Q.;Wei, J.;Zhou,B.;Han,C.;Chen,C.Researchoncontrol strategiesofopen-windingpermanent magneticgenerator. InProceedingsof the InternationalConferenceonElectricalMachinesandSystems, Beijing,China,20–23August2011;pp.1–6. 14. Lee,Y.;Ha, J.I.Hybridmodulationofdual inverter foropen-endpermanentmagnetsynchronousmotor. IEEETrans. PowerElectron. 2015,30, 3286–3299. [CrossRef] 15. Casadei,D.; Grandi,G.; Lega,A.; Rossi, C.Multilevel operation and input power balancing for adual two-level inverterwith insulatedDCsources. IEEETrans. Ind.Appl. 2008,44, 1815–1824. [CrossRef] 16. Welchko, B.A.Adouble-ended inverter system for the combinedpropulsion and energymanagement functions inhybridvehicleswithenergystorage. InProceedingsof the IndustrialElectronicsSociety2005, IECON2005,Raleigh,NC,USA,6–10November2005. 17. Nipp,E.PermanentMagnetMotorDrivesWithSwitchedStatorWindings. Ph.D.Thesis,Royal Instituteof Techonology,Stockholm,Sweden,May1999. 18. Nguyen,N.K.;Semail,E.;Meinguet,F.;Sandulescu,P.;Kestelyn,X.;Aslan,B.Differentvirtualstatorwinding conïŹgurationsofopen-endwindingïŹve-phasePMmachines forwidespeedrangewithoutïŹ‚uxweakening operation. InProceedingsof theEuropeanConferenceonPowerElectronicsandApplications,Lille,France, 2–6September2013;pp.1–8. 19. Welchko,B.;Nagashima, J.M.The inïŹ‚uenceof topologyselectionon thedesignofEV/HEVpropulsion systems. IEEEPowerElectron. Lett. 2003,99, 36–40. [CrossRef] 20. Nguyen,N.;Meinguet,F.;Semail,E.;Kestelyn,X.Fault-tolerantoperationofanopen-endwindingïŹve-phase PMSMdrivewithshort-circuit inverter fault. IEEETrans. Ind. Electron. 2014,63, 595–605. [CrossRef] 262
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Emerging Technologies for Electric and Hybrid Vehicles
Titel
Emerging Technologies for Electric and Hybrid Vehicles
Herausgeber
MDPI
Ort
Basel
Datum
2017
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-03897-191-7
Abmessungen
17.0 x 24.4 cm
Seiten
376
Schlagwörter
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)
Kategorie
Technik
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Emerging Technologies for Electric and Hybrid Vehicles