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Energies 2016,9, 270 21. Hawkins, T.R.; Singh, B.; Majeau-Bettez, G.; StrĂžmman, A.H. Comparative environmental life cycle assessmentofconventionalandelectricvehicles. J. Ind. Ecol. 2013,17, 53–64. [CrossRef] 22. Matsuhashi,R.;Kudoh,Y.;Yoshida,Y.; Ishitani,H.;Yoshioka,M.;Yoshioka,K.LifecycleofCO2-emissions fromelectricvehiclesandgasolinevehiclesutilizingaprocess-relationalmodel. Int. J. LifeCycleAssess. 2000, 5, 306–312. [CrossRef] 23. Putrus,G.;Suwanapingkarl,P.; Johnston,D.;Bentley,E.;Narayana,M. Impactofelectricvehiclesonpower distributionnetworks. InProceedingsof theVehiclePowerandPropulsionConference,Dearborn,MI,USA, 7–11September2009;pp.827–831. 24. Clement-Nyns, K.; Haesen, E.; Driesen, J. The impact of chargingplug-in hybrid electric vehicles on a residentialdistributiongrid. IEEETrans. PowerSyst. 2010,25, 371–380. [CrossRef] 25. Mets,K.;Verschueren,T.;Haerick,W.;Develder,C.;DeTurck,F.Optimizingsmartenergycontrol strategies forplug-inhybridelectricvehiclecharging. InProceedingsof theNetworkOperationsandManagement SymposiumWorkshops (NOMSWksps),Osaka, Japan,19–23April2010;pp.293–299. 26. Rivera,S.;Wu,B.;Kouro,S.;Yaramasu,V.;Wang, J.Electricvehiclechargingstationusinganeutralpoint clampedconverterwithbipolarDCbus. IEEETrans. Ind. Electron. 2015,62, 1999–2009. [CrossRef] 27. Liu,Z.;Wen,F.;Ledwich,G.Optimalplanningofelectric-vehiclechargingstations indistributionsystems. IEEETrans. PowerDeliv. 2013,28, 102–110. [CrossRef] 28. Wirges, J.;Linder,S.;Kessler,A.Modelling thedevelopmentofaregional charging infrastructure forelectric vehicles in timeandspace.Eur. J.Transp. Infrastruct. Res. 2012,12, 391–416. 29. Jia,L.;Hu,Z.;Song,Y.;Luo,Z.Optimalsitingandsizingofelectricvehiclechargingstations. InProceedings of the2012 IEEEInternationalElectricVehicleConference (IEVC),Greenville,NC,USA,4–8March2012; pp.1–6. 30. Ge,S.; Feng,L.;Liu,H.Theplanningofelectricvehicle chargingstationbasedongridpartitionmethod. InProceedingsof the2011 InternationalConferenceonElectricalandControlEngineering(ICECE),Yichang, China,16–18September2011;pp.2726–2730. 31. Xi, X.; Sioshansi, R.;Marano,V. Simulation-optimizationmodel for location of a public electric vehicle charging infrastructure.Transp. Res. PartDTransp. Environ. 2013,22, 60–69. [CrossRef] 32. Sathaye,N.;Kelley,S.Anapproachfor theoptimalplanningofelectricvehicle infrastructure forhighway corridors.Transp. Res. PartELogist. Transp. Rev. 2013,59, 15–33. [CrossRef] 33. Pashajavid,E.;Golkar,M.Optimalplacementandsizingofplug inelectricvehicleschargingstationswithin distributionnetworkswithhighpenetrationofphotovoltaicpanels. J.Renew. Sustain. Energy2013,5, 053126. [CrossRef] 34. Zi-fa, L.; Wei, Z.; Xing, J.; Ke, L. Optimal planning of charging station for electric vehicle based on particleswarmoptimization. InProceedingsof the InnovativeSmartGridTechnologies-Asia (ISGTAsia), Tianjing,China,21–24May2012;pp.1–5. 35. You,P.-S.;Hsieh,Y.-C.Ahybridheuristicapproachtotheproblemofthelocationofvehiclechargingstations. Comput. Ind. Eng. 2014,70, 195–204. [CrossRef] 36. Yao,W.;Zhao, J.;Wen,F.;Dong,Z.;Xue,Y.;Xu,Y.;Meng,K.Amulti-objectivecollaborativeplanningstrategy for integratedpowerdistributionandelectricvehiclechargingsystems. IEEETrans. PowerSyst. 2014,29, 1811–1821. [CrossRef] 37. Sadeghi-Barzani,P.;Rajabi-Ghahnavieh,A.;Kazemi-Karegar,H.Optimal fast chargingstationplacingand sizing.Appl. Energy2014,125, 289–299. [CrossRef] 38. Chung,S.H.;Kwon,C.Multi-periodplanningforelectriccarchargingstation locations:AcaseofKorean expressways.Eur. J.Oper. Res. 2015,242, 677–687. [CrossRef] 39. Yager,R.R.;Zadeh,L.A.AnIntroduction toFuzzyLogicApplications in IntelligentSystems; SpringerScience& BusinessMedia:NewYork,NY,USA,2012;Volume165. 40. NovĂĄk,V.;PerïŹlieva, I.;Mockor, J.MathematicalPrinciples ofFuzzyLogic; SpringerScience&BusinessMedia: NewYork,NY,USA,2012;Volume517. 41. Kumar, A.; Kaur, J.; Singh, P. A new method for solving fully fuzzy linear programming problems. Appl.Math.Model. 2011,35, 817–823. [CrossRef] 42. Li,D.-F.Aratiorankingmethodof triangular intuitionistic fuzzynumbersanditsapplicationtoMADM problems.Comput.Math.Appl. 2010,60, 1557–1570. [CrossRef] 199
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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