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1、ElectricalBatteryModelforUseinDynamicElectricVehicleSimulationsRyanC.Kroeze,PhilipT.KreinUniversityofIllinoisatUrbana-ChampaignDepartmentofElectricalandComputerEngineering1406W.GreenSt.Urbana,IL61801Tel.:217-333-6592,Fax:217-333-1162Email:rkroeze2@uiuc.edu,krein@uiuc.eduAbstr
2、act-Simulationofelectricvehicles,hybridelectricdevelopedthroughtheNationalRenewableEnergyvehicles,andplug-inhybridelectricvehiclesoverdrivingLaboratory(NREL)[1]isasimulatorbasedonstaticscheduleswithinafulldynamichybridandelectricvehiclemapsthatreflectsteady-statebehaviorofveh
3、iclesimulatorrequiresbatterymodelscapableofpredictingsubsystems.Adynamicsimulator[2]-[3]offersamorestate-of-charge,I-Vcharacteristics,anddynamicbehaviordetailedlook,basedondynamicequationsofeachofdifferentbatterytypes.Abatterymodelcapableofsubcomponent(theengine,battery,inver
4、ter,motor,andreproducinglithium-ion,nickel-metalhydride,andlead-transmission)onmicrosecondtimescales.TheSimulinkacidI-Vcharacteristics(withminimalmodelalterations)isproposed.Abattery-testingapparatuswasdesignedtocomponentblockofthebatterymodelin[2-3]wasmeasuretheproposedparam
5、etersofthebatterymodelfordesignedforvehicleswithlead-acidbatterypacks.Theallthreebatterytypesandsimulatedrivingscheduleswithlead-acidmodelisinsufficientforaccuratesimulationsaprogrammedsourceandloadconfiguration.Amultipleofvehicledrivetrainswithdifferentbattery-packtime-const
6、antbatterymodelwasusedformodelinglithium-chemistries.Here,athreetime-constantdynamicelectricionbatteries;verificationoftimeconstantsinthesecondstobatterymodelforlead-acid,nickelmetalhydrideminutesandhourrangeshasbeenshowninnumerous(NiMH),andlithiumion(Li-ion)batteriesispropos
7、edresearcharticlesandatimeconstantinthemillisecondanddevelopedforusewithinadynamicHEVsimulator.rangeisverifiedherewithexperiments.LackofsignificantTheelectricalmodelmustbothaccuratelyrepresentthetimeconstantsinthemillisecondrangeisvalidatedthroughdirecttesting.Amodeledcapacit
8、y-rateeffectwithintheterminalvoltage,state-of-charge(SOC),andpowerst