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Energies 2017,10, 1217 95. Hegazy,O.;VanMierlo, J.;Lataire,P.Analysis, controlandcomparisonofDC/DCboostconverter topologies for fuelcellhybridelectricvehicleapplications. InProceedingsof the14thEuropeanConferenceonPower ElectronicsandApplications (EPE2011),Birmingham,UK,30August–1September2011. 96. Hong, J.;Lee,H.;Nam,K.ChargingMethodfor theSecondaryBattery inDual-InverterDriveSystemsfor ElectricVehicles. IEEETrans. PowerElectron. 2015,30, 909–921. [CrossRef] 97. Sangdehi,S.M.M.;Hamidifar,S.;Kar,N.C.AnovelbidirectionalDC/ACstackedmatrixconverterdesign forelectriïŹedvehicleapplications. IEEETrans.Veh. Technol. 2014,63, 3038–3050. [CrossRef] 98. Kim,Y.J.;Lee,J.Y.Full-Bridge+SRTHybridDC/DCConverterfora6.6-kWEVOn-BoardCharger. IEEETrans. Veh. Technol. 2016,65, 4419–4428. [CrossRef] 99. Kimura, S.; Itoh,Y.;Martinez,W.;Yamamoto,M.; Imaoka, J.DownsizingEffectsof IntegratedMagnetic Components inHighPowerDensityDC–DCConverters forEVandHEVApplications. IEEETrans. Ind.Appl. 2016,52, 3294–3305. [CrossRef] 100. Schroeder, J.C.; Fuchs, F.W.DetailedCharacterization of Coupled Inductors in InterleavedConverters RegardingtheDemandforAdditionalFiltering. InProceedingsof the2012 IEEEEnergyEnergyConversion CongressandExposition(ECCE),Raleigh,NC,USA,15–20September2012;pp.759–766. 101. Imaoka, J.; Yamamoto,M.;Nakamura,Y.; Kawashima,T.Analysis of output capacitorvoltage ripple in multi-phase transformer-linkedboostchoppercircuit. IEEEJ. Ind.Appl. 2013,2, 252–260. [CrossRef] 102. Zhu, J.;Pratt,A.CapacitorRippleCurrent inan interleavedPFCConverter. IEEETrans. PowerElectron. 2009, 24, 1506–1514. [CrossRef] 103. Wang,C.;Xu,M.;Lee,F.C.;Lu,B.EMIStudyfor the InterleavedMulti-ChannelPFC. InProceedingsof the IEEEPowerElectronicsSpecialistsConference (PESC),Orlando,FL,USA,17–21 June2007;pp.1336–1342. 104. O’Loughlin,M. An Interleaved PFCPreregulator forHigh-Power Converters. Available online: http: //www.ti.com/download/trng/docs/seminar/Topic5MO.pdf (accessedon7August2017). 105. Balogh,L.;Redl,R.Power-factorcorrectionwithinterleavedboostconverters incontinuous-inductor-current mode. InProceedingsof the IEEEAppliedPowerElectronicsConferenceandExposition,SanDiego,CA, USA,7–11March1993;pp.168–174. 106. Jang, Y.; Jovanovic,M.M. Interleaved boost converter with intrinsic voltage-doubler characteristic for universal-linePFCfrontend. IEEETrans. PowerElectron. 2007,22, 1394–1401. [CrossRef] 107. Kong,P.;Wang,S.;Lee,F.C.;Wang,C.Common-modeEMIstudyandreductiontechniquefortheinterleaved multichannelPFCconverter. IEEETrans. PowerElectron. 2008,23, 2576–2584. [CrossRef] 108. Gautam,D.S.;Musavi,F.;Eberle,W.;Dunford,W.G.Azerovoltageswitchingfull-bridgedc-dcconverter withcapacitiveoutputïŹlter foraplug-in-hybridelectricvehiclebatterycharger. InProceedingsof the IEEE AppliedPowerElectronicsConferenceandExposition,Orlando,FL,USA,5–9February2012;pp.1381–1386. 109. Musavi,F.;Craciun,M.;Gautam,D.S.;Eberle,W.;Dunford,W.G.AnLLCresonantDC-DCConverter for wideoutputvoltagerangebatterychargingapplications. IEEETrans. PowerElectron. 2013,28, 5437–5445. [CrossRef] 110. Gurkaynak,Y.;Li,Z.;Khaligh,A.Anovelgrid-tied, solarpoweredresidentialhomewithplug-inhybrid electric vehicle (PHEV) loads. In Proceedings of the 5thAnnual IEEEVehicle Power and Propulsion Conference,Dearborn,MI,USA,7–10September2009;pp.813–816. 111. Onar,O.Bi-DirectionalRectiïŹer/Inverter andBi-DirectionalDC/DCConverters Integration forPlug-inHybrid ElectricVehicleswithHybridBattery/Ultra-CapacitorsEnergyStorageSystems; Illinois InstituteofTechnology: Chicago, IL,USA,2009. 112. Rashid, M.H. Power Electronics Handbook: Devices, Circuits and Applications; Elsevier: Amsterdam, TheNetherlands,2010. 113. Koushki,B.;Safaee,A.; Jain,P.;Bakhshai,A.Reviewandcomparisonofbi-directionalAC-DCconverters withV2Gcapability foron-boardEVandHEV.InProceedingsof the2014IEEETransportationElectriïŹcation ConferenceandExpo(ITEC),Dearborn,MI,USA,15–18 June2014. 114. Yao,L.;Lim,W.H.;Tsai,T.S.AReal-TimeChargingSchemeforDemandResponse inElectricVehicleParking Station. IEEETrans. SmartGrid2017,8, 52–62. [CrossRef] 115. KĂŒtt,L.;SaarijĂ€rvi,E.;Lehtonen,M.;MĂ”lder,H.;Niitsoo, J.Areviewoftheharmonicandunbalanceeffects in electricaldistributionnetworksduetoEVcharging. InProceedingsof the201312thInternationalConference onEnvironmentandElectricalEngineering(EEEIC),Wroclaw,Poland,5–8May2013. 79
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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