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PROCEEDINGSOFTHEASME2010INTERNATIONALDESIGNENGINEERINGTECHNICALCONFERENCESSEEHTTP/WWWASMEORG/TERMS/TERMS_USECFMMODIFIEDTHEBATTERYEQUATIONSTOSIMULATEABATTERYPACKCOMPOSEDOFSERIESANDPARALLELCOMBINATIONSOFSINGLECELLSINORDERTOCONNECTTHEBATTERYPACKTOAMOTORWEHADTODEVELOPAPOWERCONTROLLERMODELASPARTOFTHESYSTEMINTEGRATIONWEFURTHERINCORPORATEDASIMPLEONEDIMENSIONALVEHICLEMODELTHATDRIVESONANINCLINEDPLANE,ATERRAINMODELTHATCONTROLSTHEINCLINE,ANDADRIVECYCLEMODELTHATCONTROLSTHEVEHICLESDESIREDSPEEDBYVARYINGTHEDRIVECYCLEANDTERRAINMODEL,WETESTEDTHEBEVUNDERVARIOUSDRIVINGCONDITIONSFIGURE1BLOCKDIAGRAMOFOVERALLBEVMODEL2SYSTEMMODELINGANDSIMULATIONTHETECHNIQUEWEDECIDEDTOUSEWASMATHBASEDMODELINGUSINGMAPLESIMASTHESIMULATIONENVIRONMENT,WHICHHASAGRAPHICALINTERFACEFORINTERCONNECTINGSYSTEMCOMPONENTSTHESYSTEMMODELISTHENPROCESSEDBYTHEMAPLEMATHEMATICSENGINE,ANDFINALLYTHEDIFFERENTIALALGEBRAICEQUATIONSDAESDESCRIBINGTHESYSTEMARESIMULATEDNUMERICALLYTOPRODUCEOUTPUTDATAFOR3DMULTIBODYSIMULATIONITUSESTHEDYNAFLEXPROENGINE,WHICHUSESLINEARGRAPHTHEORYFORSYSTEMSIMULATION1,1121BATTERYONEOFTHEMOSTIMPORTANTCOMPONENTSOFANELECTRICVEHICLEEITHERBEVORHEVISTHEBATTERYTHEREAREMANYWAYSOFMODELINGDIFFERENTBATTERYCHEMISTRIESDEPENDINGONTHEFIDELITYNEEDEDANDTHEBATTERYPARAMETERSOFINTERESTSEETHEARTICLEBYRAOETAL13FORANOVERVIEWOFSOMEOFTHETECHNIQUESGENERALLY,WITHINCREASINGMODELACCURACYCOMESINCREASEDCOMPUTATIONALREQUIREMENTSSOMEMODELINGTECHNIQUESTHATWEREVIEWEDWERETHELEADACIDMODELOFSALAMEHETAL14THEMATHEMATICALLITHIUMIONMODELOFRONGANDPEDRAM15THATINCORPORATESSTATEOFHEALTHANDTEMPERATUREEFFECTSTHELUMPEDPARAMETERMODELINSECTION31OFTHEPARTNERSHIPFORANEWGENERATIONOFVEHICLESPNGVBATTERYTESTMANUAL16THEKALMANFILTERINGTECHNIQUESOFPILLERETAL17THEELECTRICALCIRCUITMODELOFCHENANDRINCONMORA12ANDTHEIMPEDANCEMODELOFNELSONETAL18THESEDIFFERENTTECHNIQUESHAVETHEIRSTRENGTHSANDWEAKNESSESANDLIMITEDRANGESOFAPPLICATIONTHEREISAGREATINTERESTINUSINGLITHIUMIONBATTERIESINELECTRICVEHICLES,ASTHEYARELIGHTANDHAVEAHIGHERPOWERTOWEIGHTANDPOWERTOSIZERATIOTHANLEADACIDORNICKELBASEDBATTERIESGREATDEMANDSAREPLACEDONVEHICLEBATTERIESASTHEDRIVERACCELERATESANDBRAKESREGENERATIVELY,PUTTINGTHEBATTERIESTHROUGHPERIODSOFHIGHCURRENTDRAWANDRECHARGEDEPENDINGONTHEDRIVINGENVIRONMENT,THEBATTERIESCANALSOBESUBJECTEDTOLARGETEMPERATUREVARIATIONS,WHICHCANHAVEASIGNIFICANTEFFECTONTHEBATTERYSPERFORMANCEANDLIFETIMETHUSWENEEDEDTOMODELALITHIUMIONBATTERYCHEMISTRYOVERAWIDESTATEOFCHARGESOCRANGE,UNDERWIDELYVARYINGCURRENTS,FORVARIOUSTEMPERATURESSINCEWEWOULDEVENTUALLYLIKETOMODELTHISVEHICLEINAHARDWAREINTHELOOPHILSYSTEM,WENEEDEDAMODELTHATWASNOTCOMPUTATIONALLYEXPENSIVE,ANDWEDIDNOTREQUIREAHIGHFIDELITYMODELTHESEREQUIREMENTSLEDUSTOTHEELECTRICALCIRCUITMODELOFCHENANDRINCONMORAWEIMPLEMENTEDTHEIRCOMPONENTSINMAPLESIMANDUSEDACUSTOMFUNCTIONBLOCKTOREPRESENTTHENONLINEARRELATIONSHIPBETWEENTHESTATEOFCHARGEANDTHEELECTRICALCOMPONENTSEQUATIONS2TO6INTHEIRPAPERSEEFIG2FORABLOCKDIAGRAMOFTHEBATTERYFIGURE2BLOCKDIAGRAMOFSINGLECELLBATTERYMODELSINCETHEIRMODELISOFASINGLECELL,WEMODIFIEDTHEIREQUATIONSTOSIMULATEABATTERYOFCELLSINPARALLELANDSERIESTHECHENANDRINCONMORABATTERYCANBEDIVIDEDINTOTWOLINEARCIRCUITSWITHANONLINEARCOUPLINGBETWEENTHEMSEEFIG2FORLABELSOFTHESEDIFFERENTCIRCUITSONECIRCUITISALARGECAPACITORINPARALLELWITHARESISTORTHATMODELSTHECHARGESTATEOFTHEBATTERYANDSELFDISCHARGETHISCANBECALLEDTHE“CAPACITYCIRCUIT”ANOTHERCIRCUITISAVOLTAGESOURCEINSERIESWITHARESISTOR2COPYRIGHTCNULL2010BYASMEDOWNLOADED25JUN2011TO1132043335REDISTRIBUTIONSUBJECTTOASMELICENSEORCOPYRIGHTSEEHTTP/WWWASMEORG/TERMS/TERMS_USECFMCAPACITORNETWORKTHATMODELSTHETIMERESPONSEOFTHEBATTERYTHISCANBECALLEDTHE“TIMERESPONSECIRCUIT”TOADAPTTHEIRSINGLECELLMODELTOSIMULATEANENTIREBATTERYPACK,LETNPARALLELBETHENUMBEROFCELLSINAPARALLELPACK,ANDLETNSERIESBETHENUMBEROFPARALLELPACKSPLACEDINSERIESTOMAKETHEWHOLEBATTERYTHEOPENCIRCUITVOLTAGEINTHETIMERESPONSECIRCUITISMULTIPLIEDBYNSERIESTHECURRENTFLOWINGINTHETIMERESPONSECIRCUITISDIVIDEDBYNPARALLELWHENITFLOWSINTHECAPACITYCIRCUITTHERESISTORSINTHETIMERESPONSECIRCUITAREMULTIPLIEDBYNSERIES/NPARALLELANDTHECAPACITORSAREMULTIPLIEDBYNPARALLEL/NSERIESASINGLECELLOFTHEBATTERYMODELHASANOPENCIRCUITVOLTAGEOF33VANDACAPACITYOF8375MAHATA1ADISCHARGERATESTARTINGAT100STATEOFCHARGEBYPLACING8CELLSINPARALLEL,AND74OFTHESEPARALLELPACKSINSERIES,A2442V,67AHBATTERYPACKWASCREATEDTHISPACKISCOMPARABLETOTHATINA2007TOYOTACAMRYHYBRID19THECHENANDRINCONMORABATTERYMODELISSIMPLEENOUGHTOSIMULATEINASHORTAMOUNTOFTIMEWHILEBEINGCOMPLEXENOUGHTOPROVIDETHEFOLLOWINGVARIATIONSINTHEOPENCIRCUITVOLTAGEWITHSOCTRANSIENTEFFECTSOFCHARGEDEPLETIONANDRECOVERYANDTHEIRDEPENDENCEONSOCANDTHEVARIATIONINBATTERYCAPACITYWITHDISCHARGECURRENTFURTHERMORE,SINCEITISANELECTRICALCIRCUITMODELITCANEASILYBEINCORPORATEDINTOTHEELECTRICALSYSTEMOFTHEBEVMODELANDISAMENABLETOBEINGREPRESENTEDUSINGMATHBASEDMODELINGTECHNIQUESONEOFTHEDOWNSIDESOFTHISMODELISTHATNOTEMPERATUREEFFECTSOFANYKINDAREMODELED,ALTHOUGHCHENANDRINCONMORASTATEITWOULDNOTBEDIFFICULTTOINCLUDETHEMINANELECTRICVEHICLETHETEMPERATUREWILLVARYWITHEXTERNALENVIRONMENTALCONDITIONS,WITHHEATINGOFTHEBATTERYDUETOINTERNALLOSSES,ANDWITHENDO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EMREPRESENTATIONCLOSERTOTHEPHYSICSOFTHESYSTEMUSINGAMATHBASEDMODELOFACOMPLETEBATTERYPACKBASEDONTHEBATTERYMODELOFCHENANDRINCONMORA,ASIMPLEPOWERCONTROLLERMODEL,ANDASTANDARDMODELICADCMOTORWEWEREABLETOPUTTOGETHERABEVPOWERTRAINANDCONNECTITTOASIMPLEVEHICLEDYNAMICSMODEL6COPYRIGHTCNULL2010BYASMEDOWNLOADED25JUN2011TO1132043335REDISTRIBUTIONSUBJECTTOASMELICENSEORCOPYRIGHTSEEHTTP/WWWASMEORG/TERMS/TERMS_USECFMBYAPPLYINGDIFFERENTTERRAINCONDITIONSANDDRIVINGCYCLES,TWODIFFERENTSCENARIOSWERETESTEDTOCOMPARETHEPERFORMANCEOFOURVEHICLEMODELTOWHATONEWOULDEXPECTFROMANACTUALVEHICLEINBOTHCASESTHERESULTSAGREEDWITHINTUITIONANDWITHAPPROXIMATETHEORETICALCALCULATIONSTHEUNDERLYINGMATHEMATICALEQUATIONSDESCRIBINGTHESYSTEMCANBEUSEDFORSENSITIVITYANALYSIS,OPTIMIZATION,ORFORUSEINREALTIMEHILSIMULATIONFUTUREWORKWILLINCLUDEADDINGANINTERNALCOMBUSTIONENGINEASARANGEEXTENDER,INCREASINGTHEFIDELITYOFTHEPOWERCONTROLLERANDMOTORMODEL,ANDADDINGMORECOMPLEXVEHICLE,TERRAIN,ANDDRIVECYCLEMODELSTOTHESYSTEMACKNOWLEDGMENTWEWOULDLIKETOTHANKTOYOTA,MAPLESOFT,ANDTHENATURALSCIENCESANDENGINEERINGRESEARCHCOUNCILOFCANADAFORFUNDINGANDSUPPORTREFERENCES1SCHMITKE,C,MORENCY,K,ANDMCPHEE,J,2008“USINGGRAPHTHEORYANDSYMBOLICCOMPUTINGTOGENERATEEFFICIENTMODELSFORMULTIBODYVEHICLEDYNAMICS”IMECHEJMULTIBODYDYNAMICS,222,PP3393522MODELICAASSOCIATIONHTTP/WWWMODELICAORG/3HELLGREN,J,2002“MODELLINGOFHYBRIDELECTRICVEHICLESINMODELICAFORVIRTUALPROTOTYPING”INPROCEEDINGSOFTHE2NDINTERNATIONALMODELICACONFERENCE,PP247256SEEALSOURLHTTP/WWWMODELICAORG/EVENTS/CONFERENCE2002/PAPERS/P32_HELLGRENPDF4LAINE,L,ANDANDREASSON,J,2003“MODELLINGOFGENERICHYBRIDELECTRICVEHICLES”INPROCEEDINGSOFTHE3RDINTERNATIONALMODELICACONFERENCE,PP8794SEEALSOURLHTTP/WWWMODELICAORG/CONFERENCE2003/PAPERS/H26_LAINEPDF5WALLEN,J,2004“MODELLINGOFCOMPONENTSFORCONVENTIONALCARANDHYBRIDELECTRICVEHICLEINMODELICA”MSTHESIS,LINKOPINGSUNIVERSISTET,MAY6ZHOU,YL,2005“MODELINGANDSIMULATIONOFHYBRIDELECTRICVEHICLES”MSTHESIS,UNIVERSITYOFVICTORIA7SIMIC,D,ANDBAUML,T,2008“IMPLEMENTATIONOFHYBRIDELECTRICVEHICLESUSINGTHEVEHICLEINTERFACESANDTHESMARTELECTRICDRIVESLIBRARIES”INPROCEEDINGSOFTHE6THINTERNATIONALMODELICACONFERENCE,PP557563SEEALSOURLHTTP/WWWMODELICAORG/EVENTS/MODELICA2008/PROCEEDINGS/SESSIONS/SESSION5CPDF8DYMOLAMULTIENGINEERINGANDMODELSIMULATIONHTTP/WWW3DSCOM/PRODUCTS/CATIA/PORTFOLIO/DYMOLA9MAPLESIMHIGHPERFORMANCEMULTIDOMAINMODELINGANDSIMULATIONHTTP/WWWMAPLESOFTCOM/PRODUCTS/MAPLESIM/INDEXASPX10JALALI,K,UCHIDA,T,MCPHEE,J,ANDLAMBERT,S,2009“INTEGRATEDSTABILITYCONTROLSYSTEMFORELECTRICVEHICLESWITHINWHEELMOTORSUSINGSOFTCOMPUTINGTECHNIQUES”SAEINTJPASSENGCARSELECTRONELECTRSYST,2,PP10911911VOGT,H,SCHMITKE,C,JALALI,K,ANDMCPHEE,J,2008“UNIFIEDMODELLINGANDREALTIMESIMULATIONOFANELECTRICVEHICLE”INTJVEHAUTOSYS,6,PP28830712CHEN,M,ANDRINCONMORA,GA,2006“ACCURATEELECTRICALBATTERYMODELCAPABLEOFPREDICTINGRUNTIMEANDIVPERFORMANCE”IEEETRANSACTIONSONENERGYCONVERSION,212,JUNE,PP50451113RAO,R,VRUDHULA,S,ANDRAKHMATOV,DN,2003“BATTERYMODELING

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