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2013,37(15)電on力表ofthe現(xiàn)自動(dòng)代transmissionsystembasedVSC[c]//ProceedingsWANGShanshan,ZHOUXiaoxin,TANGGuangfu.Modelingofmodularmulti-levelvoltagesource2008IEEEPowerandEnergySocietyGeneral24,2008,Pittsburgh,PA,USA:8p.Meeting,July20一converter[J].ProceedingsoftheCSEE,2011,3l(24):I-8.[73劉鐘淇,宋強(qiáng),劉文華.基于模塊化多電平變流器的輕型直流輸電系統(tǒng)[J].電力系統(tǒng)自動(dòng)化,2010,34(2):53—58.LIUZhongqi。SONGbasedon[13]管敏淵,徐政.屠卿瑞,等.模塊化多電平換流器型直流輸電的調(diào)制策略[J].電力系統(tǒng)自動(dòng)化,2010,34(2):48—52.GUANQiang,LIUWenhua.VSC—HVDCsystemMinyuan,XUZheng,TUQingrui,eta1.Nearestlevelformodularmultilevelofconvertersmodularmultilevelconverters[J].AutomationofmodulationinHVl3(2Systems,ElectricPowerSystems,2010,34(2):53—58.transmission[J].Automation2010,34(2):48-52.r14]PEREZM,RODRIGUEZinhybridElectricPower[8]喬衛(wèi)東,毛穎科.上海柔性直流輸電示范工程綜述fJ].華東電力,2011,39(7):1137一1140.J,PONTTconverterJ。etwithIEEEa1.PowerlevelQIAOWeidong,MAOYingke.OverviewHVDCtransmissiondemonstrationofShanghaiflexibleChinadistributionmulti—cellnearestproject[J].Eastmodulation[C]//ProceedingsSymposiumonoftheInternationalElectricPower,2011,39(7):1137-1140.IndustrialElectronics(ISIE’07).June4-7,[9]屠卿瑞,徐政,鄭翔,等.模塊化多電平換流器型直流輸電內(nèi)部環(huán)流機(jī)理分析[J].高電壓技術(shù),2010,36(2):547—552.TU2007。Vigo,Span:736—741.[15]管敏淵,徐政,潘偉勇,等.最近電平逼近調(diào)制的基波諧波特性解析計(jì)算口].高電壓技術(shù),2010,36(5):1327—1332.GUANQingrui,XUZheng,ZHENGXiang,eta1.MechanismonanalysisconverterthecirculatingcurrentinmodularmultilevelMinyuan,XUZheng,PANWeiyong,eta1.AnalyticalfundamentalwaveandharmoniccharacteristicsbasedHVDC[J].HighVoltageEngineering,2010,calculationoffornearest36(2):547-552.levelmodulation[J].HighVoltageEngineering,[10]殷自力,李庚銀,李廣凱,等.柔性直流輸電系統(tǒng)運(yùn)行機(jī)理分析及主回路相關(guān)參數(shù)設(shè)計(jì)[J].電網(wǎng)技術(shù),2007,31(21):16—21.YINZili,LIGengyin,LIOuangkai.eta1.AnalysisoperationalmechanismofVSC—HVDCandrelevantparameterdesignofitsmain2010,36(5):1327—1332.趙成勇(1964一),男,博士,教授,博士生導(dǎo)師,主要研究方向:直流輸電、電能質(zhì)量分析與控制等。E-mail:chengyongzhao@ncepu.edu.cn胡circuit[J].PowerSystemsTechnology,2007,31(21):16—21_[11]管敏淵,徐政.模塊化多電平換流器型直流輸電的建模與控制[J].電力系統(tǒng)自動(dòng)化,2010,34(19):64—68.GUANcn靜(1984一),女,通信作者,博士研究生,主要研究方向:柔性直流輸電技術(shù)。E—mail:hujin9901@yahoo.corn.Minyuan.XUZheng.ModelingandcontrolofmodularconvertermultilevelinHVDCtransmission[J].Automationof翟曉萌(1988一),男,碩士研究生,主要研究方向:直流輸電與柔性輸配電技術(shù)。E—mail:xiaomeng_zhai@qq.cornElectricPowerSystems,2010,34(19):64—68.[12]王姍姍,周孝信,湯廣福.模塊化多電平電壓源換流器的數(shù)學(xué)模型[J].中國(guó)電機(jī)工程學(xué)報(bào),2011,31(24):卜8.(編輯丁琰)AParameterDesignMethodofBridgeArmReactorinModularMultilevelConverterZHAOChengyong1,HUJin91,ZHAIXiaomen91,XIEMinhua2,GAOYan92(1.StateKeyLaboratoryforAlternateElectricalPowerSystemwithRenewableEnergySources,NorthChinaElectricPowerUniversity,Beijing102206,China;2.StateGridSmartGridResearchInstitute,Beijing102200,China)Abstract:Asharmonicanimportantpartofthemodularmultilevelconverter(MMC),thebridgearmandtransientcurrentreactortoisabletorestrainoutputcurrentofconverters.ThedeterminationofitsinductanceiscrucialreactanceoptimizingtheoperatingcurrentcharacteristicsofMMC.Abridgeproposed.ThearmreactorarmdesignmethodconsideringonanrestrainingtheACsideandfluctuationisofisproperlysimplifiedbasedanalysisofthetopologicalcurrentstructureworkingprincipleMMC.TherelationshipbetweentheequivalentinductancevalueandtheACsideispresentedcurrentasafluctuationisdetaihdlyderived,whichafourth-orderequationabouttheequivalentreactanceundertheconditionofdefiniteamountoftheACsidereactancefluctuation.TheequationissolvedbyMATLABandthelowerlimitvalueofthebridgearmareisobtained.Thefeasibilityandveracityoftheproposeddesignmethodverifiedbybuildingreactorasimulationmodelof21一levelMMCinPSCAD/effectivelyreducetheharmoniccurrent,withEMTDC.Theresultsofsimulationshowthatthedesignedbridgearmthecalculatedvaluesbasicallyinagreementwiththeexperimentalcanones.ThisworkissupportedbyNationalNaturalScienceFoundationofChina(No.51177042);NationalHighTechnologyResearchandDevelopmentProgramofChina(863Program)(No.SS2013AA0

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