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Emerging Technologies for Electric and Hybrid Vehicles
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Energies 2016,9, 240 87. Suh, I.S.;Lee,M.;Kim, J.;Oh,S.T.;Won, J.P.DesignandexperimentalanalysisofanefficientHVAC(heating, ventilation, air-conditioning) systemonanelectricbuswithdynamicon-roadwireless charging. Energy 2015,81, 262–273. [CrossRef] 88. Zou,H.M.; Jiang,B.;Wang,Q.;Tian,C.Q.;Yan,Y.Y.Performanceanalysisofaheatpumpairconditioning systemcouplingwithbatterycoolingforelectricvehicles.EnergyProcedia2014,61, 891–894. [CrossRef] 89. Kim,S.C.;Kim,M.S.;Hwang, I.C.;Lim,T.W.HeatingperformanceenhancementofaCO2heatpumpsystem recoveringstackexhaust thermalenergy in fuelcellvehicles. Int. J.Refrig. 2007,30, 1215–1226. [CrossRef] 90. Lee,H.S.;Won, J.P.;Cho,C.W.;Kim,Y.C.;Lee,M.Y.Heatingperformancecharacteristicsof stackcoolant source heat pumpusingR744 for fuel cell electric vehicles. J.Mech. Sci. Technol. 2012, 26, 2065–2071. [CrossRef] 91. Yin, J. Theoretic Study of Motor Train Unit of Solar Air Conditioning System. Master’s Thesis, Southwest JiaotongUniversity,Chengdu,China,2012. 92. Sun,H.ResearchofAutomaticControl Systemof the Solar-AssistedAir-Conditioning forPureElectric Vehicle.Master’sThesis,NanchangUniversity,Nanchang,China,2012. 93. Ma,G.Y.;Shi,B.X.;Wu,L.Z.;Chen,G.S.Studyonsolar-assistedheatpumpsystemforelectricvehicleair conditioning.ActaEnergiaeSol. Sin. 2001,22, 176–180. 94. Zhao, C. Soar-Assisted System Study of Automobile Air Conditioner Based on Parallel Technology. Master’sThesis,HeifeiUniversityofTechnology,Hefei,China,2012. 95. Okuma,T.;Radermacher,R.;Hwang,Y.Anovelapplicationof thermoelectricmodules inanHVACsystem undercoldclimateoperation. J.Electron.Mater. 2012,41, 1749–1758. [CrossRef] 96. Kim,K.Y.;Kim,S.C.;Kim,M.S.Experimental studieson theheatingperformanceof thePTCheaterand heatpumpcombinedsystemin fuel cellsandelectricvehicles. Int. J.Automot. Technol. 2012,13, 971–977. [CrossRef] ©2016bytheauthors. LicenseeMDPI,Basel,Switzerland. Thisarticle isanopenaccess articledistributedunder the termsandconditionsof theCreativeCommonsAttribution (CCBY) license (http://creativecommons.org/licenses/by/4.0/). 361
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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