General Requirements to Construction of Substation外文翻译.docx
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General Requirements to Construction of Substation外文翻译.docx
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GeneralRequirementstoConstructionofSubstation外文翻译
长春工业大学
毕业设计(论文)外文资料翻译
学院电气与电子工程学院
专业班级110310
指导教师
姓名
外文出处Internationaljournalof
electricalpowerandenergysystems
2015年5月10日
GeneralRequirementstoConstructionofSubstation
CarpentierJ;OptimalPowerFlows
《Internationaljournalofelectricalpowerandenergysystems》,EISCI2011Feb
Substationsareavitalelementinapowersupplysystemofindustrialenterprises.Theyservetoreceive,convertanddistributeelectricenergy.Dependingonpowerandpurpose,thesubstationsaredividedintocentraldistributionsubstationsforavoltageof110-500kV;mainstep-downsubstationsfor110-220/6-10-35kV;deepentrancesubstationsfor110-330/6-10kV;distributionsubstationsfor6-10kV;shoptransformersubstationsfor6-10/0.38-0.66kV.Atthemainstep-downsubstations,theenergyreceivedfromthepowersourceistransformedfrom110-220kVusuallyto6-10kV(sometimes35kV)whichisdistributedamongsubstationsoftheenterpriseandisfedtohigh-voltageservices.
Centraldistributionsubstationsreceiveenergyfrompowersystemsanddistributeit(withoutorwithpartialtransformation)viaaerialandcablelinesofdeepentrancesatavoltageof110-220kVovertheenterpriseterritory.Centraldistributionsubstationdiffersfromthemaindistributionsubstationinahigherpowerandinthatbulkofitspowerisatavoltageof110-220kV;itfeaturessimplifiedswitchingcircuitsatprimaryvoltage;itisfedfromthepowertoanindividualobjectorregion.Low-andmedium-powershopsubstationstransformenergyfrom6-10kVtoasecondaryvoltageof380/220or660/380.
Step-uptransformersubstationsareusedatpowerplantsfortransformationofenergyproducedbythegeneratorstoahighervoltagewhichdecreaseslossesatalong-distancetransmission.ConvertersubstationsareintendedtoconvertACtoDC(sometimesviceversa)andtoconvertenergyofonefrequencytoanother.Convertersubstationswithsemiconductorrectifiersareconvertenergyofonefrequencytoanother.Convertersubstationswithsemiconductorrectifiersaremosteconomic.Distributionsubstationsfor6-10kVarefedprimarilyfrommaindistributionsubstations(sometimesfromcentraldistributionsubstations).
Withasystemofdividingsubstationsfor110-220kV,thefunctionsofaswitch-gearareaccomplishedbyswitch-gearsfor6-10kVatdeepentrancesubstations.
Dependingonlocationofsubstationstheirswitch-gearmaybeoutdoororindoor.Thefeedandoutputlinesat6-10kVsubstationsaremainlyofthecabletype.at35-220kVsubstationsoftheaerialtype.Whenerectingandwiringthesubstations,majorattentionisgiventoreliableandeconomicpowersupplyofagivenproduction.
Substationsareerectedbyindustrialmethodswiththeuseoflargeblocksandassembliespreparedatthesiteshopsofelectricengineeringorganizationsandfactoriesofelectricalengineeringindustry.Substationsareusuallydesignedforoperationwithoutcontinuousattendanceofthedutypersonnelbutwiththeuseofelementaryautomaticandsignalingdevices.
Whenconstructingthestructuralpartofasubstation.itisadvisabletouselight-weightindustrialstructuresandelements(panels,floors,etc.)madeofbentsections.Theseelementsarepre-madeoutsidetheerectionzoneandareonlyassembledatsite.Thisconsiderablycutsthetermsandcostofconstruction.
Basiccircuitryconceptsofsubstationsarechosenwhendesigningapowersupplysystemoftheenterprise.Substationsfeatureprimaryvoltageentrances.transformersandoutputcablelinesorcurrentconductorsofsecondaryvoltage.Substationsaremountedfromequipmentandelementsdescribedbelow.Thenumberofpossiblecombinationsofequipmentandelementsisverygreat.Whenelaboratingasubstationcircuitry,itisnecessarytostriveformaximumsimplificationandminimizingthenumberofswitchingdevices.Suchsubstationsaremorereliableandeconomic.Circuitryissimplifiedbyusingautomaticenclosureorautomaticchangeovertoreservefacilitywhichallowsrapidandfaultlessredundancyofindividualelementsandusingequipment.
Whendesigningtransformersubstationsofindustrialenterprisesforallvoltages,thefollowingbasicconsiderationsaretakenintoaccount:
1.Preferableemploymentofasingle-bussystemwithusingtwo-bussystemsonlytoensureareliableandeconomicpowersupply;
2.Wideuseofunitizedconstructionsandbustlessubstations;
3.Substantiatedemploymentofautomaticsandtelemetry;ifthesubstationdesigndoesnotenvisagetheuseofautomaticsortelemetry,thecircuitryissoarrangedastoallowforaddingsuchequipmentinfuturewithoutexcessiveinvestmentsandre-work.
4.Useofsimpleandcheapdevices-isolatingswitches,short-circuitingswitches,load-breakingisolators,fuses,withdueregardfortheirswitchingcapacitymaydrasticallycuttheneedforexpensiveandcriticaloil,vacuum,solenoidandairswitches.Substationandswitch-gearcircuitriesaresomadethatusingtheequipmentofeachproductionlineisfedfromindividualtransformers,assemblies,thelinestoallowtheirdisconnectionsimultaneouslywithmechanismswithoutdisruptingoperationofadjacentproductionflows.
Whenelaboratingcircuitryofasubstation,themostvitaltaskistoproperlychooseandarrangeswitchingdevices(switches,isolators,currentlimiters,arresters,high-voltagefuses).Thedecisiondependsonthepurpose,powerandsignificanceofthesubstation.
PowerSystemSubstationisanimportantandindispensablecomponentofthepoweritassumedthetaskofconversionanddistributionofgridsecurityandtheeconomyplayadecisiveroleinrunningistocontacttheuser’spowerplantsandintermediatelinks.Witheconomicdevelopment,expandinggridcapacity,reliabilityofoperationofthepowergridisgettinghigherandhigherrequirements.Developmentofscienceandtechnology,intelligentswitches,photoelectriccurrentandvoltagetransformer,arun-linestatedetection,trainingsimulationSubstationOperationmatures,suchashigh-tech,aswellasfiber-optictechnology,computerhigh-speednetworksysteminthedevelopmentofreal-timeapplications,boundtotheexistingsubstationautomationtechnologyhaveaprofoundimpact,all-digitalsubstationautomationsystemdevelopmenttrend.
Powersystemisoperatedbytheproduction,transmission,distributionandconsumptionofavarietyofpowerlinkedtothecompositionofelectricalequipment.Asaresultofalargenumberofpowerscannotbestored,wemustensurethattheproductionofelectricityandenergybalance.Withthescientificandtechnologicaladvancesinthetechnologicaldevelopmentofourcountryhasreachedacertainlevel.Intelligentswitches,photoelectriccurrentandvoltagetransformer,arun-linestatedetection,trainingsimulationSubstationOperationmatures,suchashigh-tech,aswellasfiber-optictechnology,computerhigh-speednetworksysteminthedevelopmentofreal-timeapplications,significantlyincreasethetransformationdegreeofautomation.
Designofoursubstationcableprogramstendtobesimple,manyoftherecentdomesticnew220kVsubstationand110kVvoltagelevelsofwiringwithouttheuseofdual-busbypassbus.TheuseofGIS,theprioritysub-bussinglewire.TerminalSubstation,thelineasfaraspossible,suchastransformerunitwiring.Alargenumberoftheintroductionofnewtechnology,transformersubstationrisinglevelofelectricalequipment,powerdistributiondevicesfromthetraditionalformofmovingtowardoil-free,vacuumswitches,SF6switchesandmechanical,electricalequipmentcombinationofthedevelopmentofsmall-scaleintegration.Inrecentyearstheworldfamoushigh-voltageelectricalequipmentcompanieshavebeendeveloping,thedevelopmentofthevarioustypesof145-550kVoutdoorhigh-pressureandultrahigh-pressurecombinationofelectricalappliances,somehigh-voltageswitchgearplanthasalsostartedproductionof145kVcompactoutdoorportfolioelectricalappliances.Smartplug-intypeoutdoorswitchgearisamorecompletehigh-pressureandultrahigh-pressureswitchsystem,whichincludeselectricalfirstandsecondequipment,aswellastheassociatedfiberopticcable,suchasplug-typecompound.Theentiredistributedsubstationautomationsystem;theintroductionofadvancednetworktechnology;substationandtheconstructionareacoversanareaofreducedsubstationprogramtosimplifywiring,switchgear,busandsteelpipes,suchastheuseofstentstosubstationlayoutismoresimple,theabolitionoftheformerstationareaandoptimizethelayouttomakeasubstantialdeclineinanareasubstation.
Withtechnologicaladvances,thetraditionalrelayprotectiondevicesaregraduallybeingreplacedbymicroprocessor-basedprotection.Microprocessor-basedprotectionisreferredtoastheprotectionofPCcomputer,adigitalrelayprotection,isbasedontheprogrammabledigitalcircuittechnologyandreal-timedigitalsignalprocessingtechnologyofthePowerSystemProtection.Atpresent,bothathomeandabroadhavebeendevelopedto32-bitdigitalsignalprocessorforhardware-basedprotection,control,measurement,anddatacommunicationsintegrationofmicroprocessor-basedprotectioncontroldevices,andartificialintelligencetechnologyintoanumberofrelayprotection,suchasartificialneuralnetworks,fuzzytheorytodeterminetherealizationoffaulttype,faultlocation,thedirectionofprotection,themainequipmentandothernewmethodsofprotection.Bymeansofwaveletanalysisofthetheoryofdigitalsignalfailureoftheentirefrequencybandinformationandtoachievefaultdetection.Theseartificialintelligencetechnologie
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