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291Vol.29No.1JournalofChongqingUniversityofTechnologyNaturalScience20151Jan.20152014-11-16513054732014M552317cstc2013jcyjA60007KJ1204211982—、。.SOCJ.20151101-106.CitationformatDENGTaoSUNHuan.ResearchonRealTimeEstimationMethodofNewSOCAmpereHoursIntegralforLithiumIonBatteryJ.JournalofChongqingUniversityofTechnologyNaturalScience20151101-106.doi10.3969/j.issn.1674-8425z.2015.01.019SOC400074SOC、、SOC。SOCSOC。SOC3%SOC。U469.722TM912A1674-8425201501-0101-06ResearchonRealTimeEstimationMethodofNewSOCAmpereHoursIntegralforLithiumIonBatteryDENGTaoSUNHuanSchoolofMechatronics&AutomotiveEngineeringChongqingJiaotongUniversityChongqing400074ChinaAbstractInordertoaccuratelyestimatethelithium-ionbatterySOCtheSOCestimationreal-timesimulationmodelwasestablishedinconsiderationofcomprehensivefactorssuchascharginganddis-chargingefficiencyandtemperaturecompensationmeasureswithampere-hourintegralmethodtheopencircuitvoltageandloadvoltagemethod.Thelithium-ionbatterycharginganddischargingtestplatformwassetupforSOCreal-timeverification.ThesimulationandexperimentalanalysisresultsshowthattheSOCerrorvaluesiscontrolledwithin3%andthenewampere-hourintegralcanprovidereal-timebatterySOCestimationanddetectionofsomeimportantreferencevalue.KeywordselectriccarsSOCnewreal-timeampere-hourestimationmethodSOCstateofcharge、1-5。、、、SOC。SOC。SOC。SOCSOC。SOCSOC。SOCSOC。SOCSOC。。SOCSOC。、、3、SOC。SOC6。1SOCSOCSOC。。SOC=1-Q/QN11QQN。1.1SOC07。SOC0=U0-n/m-n22U0mn。1.2SOCSOC=SOC0-∫t0KIdt/QN33QNIKK=Kt×η4KtηPeukert。1Kt8Kt=1+0.008Ta-T55TaT。2ηPeukertK=A×In-166IA。Anη=Q/QN=I/INn-177IN。QIAnn1.15~1.42。Peukert。Peukert9-10。1.3SOCSOC1。。SOC201SOC1。SOC1SOC。11.4SOC26SOC=SOC0-∫t0KtI/INn-1dt/QN88。SOC18SOCSOC2=SOC+SOC1/29、、、。、、、、。、、、。SOC23。2SOC2.1SOCSOCSimulinkSOC。SOC4addSOCSOCaddSOC11-12。2SOC3SOCSOC5addaddSOCSOCSOC。2.225℃SOC1CSOC6。SOCSOC301SOCSOC。SOC、、、SOC。4SOC5SOC61C3SOCSOCSOC。、、。401。RS48513-15。7。7《PNGV》11-12HPPC。①0.5C3.6V②1C10%DOD③1h④①~③90%DOD⑤100%DOD⑥1h。SOCHPPC。、。13U=fSOCIT1025℃1C30%30min1C100%。、、。8。8SOC25℃1C30%30min1C100%30min1C30%、、、。9。9、SOCSOC。SOC10。10、SOC=SOC-SOCSOC×100%10SOC1112。SOCSOC30%~50%3%SOC50%~95%501SOC1.5%SOC3%。12SOC16-17。11SOC12SOC4、、SOC。SOCSOC。、SOCSOC。SOC3%。1.J.2005431043-45.2.J.2012349136-140.3.J.2014415-2349.4.SOCJ.2012895-98.5.PACKJ.2013635-37.6.SOCJ.2009941-44.7.J.201222-4.8OshitaniMWatadaMKaorietalSD.EffectofLantha-nideoxideadditivesonthehightemperaturechargeac-ceptancecharacteristicsofpastednickelelectrodesJ.JournaloftheElectrochemicalSociety20011481A67-A73.9XiaosongHuFengchunSunYuanZou.Comparisonbe-tweentwomodel-basedalgorithmsforLi-ionbatterySOCestimationinelectricvehiclesJ.SimulationModelingPracticeandTheory2013341-11.10YaoHeXingTaoLiuChenBinZhangetal.AnewmodelforState-of-ChargeSOCestimationforhigh-powerLi-ionbatteriesJ.AppliedEnergy2013101808-814.11.SOCJ.200830155-58.12MinxinZheng.DynamicmodelforcharacteristicsofLi-ionbatteryonelectricvehicleZ.S.l.ICIEA20092967-2870.13.NIMHJ.200630102-6.14.J.2009323279-282.15AllianceBE.Batterytestmanualforplug-Inhybridelec-tricvehiclesrevisionJ.DepartmentofEnergyNationalLaboratory2008322-29.16.D.200579-80.17SatoNYaK.ThermalBehaviorAnalysisofnickelmetalhydridebatteriesforelectricvehiclesJ.JSAEReview200121205-211.601
本文标题:锂离子电池新型SOC安时积分实时估算方法-邓涛
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