文献综述-信息检索报告.docx
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1、信息检索综合检索报告1949级电机专业1班学号19491001姓名江哲明1、检索课题名称智能电网关键技术的研究(SmartGridKeyTechnologyResearch)2、检索策略2.1选择检索工具中国期刊全文数据库(CNKI)美国工程索引(EI)中国专利信息中心百度2. 2选择检索词从课题字面选从课题内涵选(同义词、近义词、上下位词)智能电网电网的智能化(smartpowergrids)电网2.0(同义词)关键技术研究(上下位词)核心技术(keytechnology)方法同义词)3.检索步骤及检索结果3.1 中国期刊全文数据库(CNKI)3.1.1检索式篇名=(智能电网+电网的智能化+
2、电网2.0)*主题=(关键技术+研究+核心技术)3. 1.2检索年限2001-2010检索结果检索命中29篇,选择5篇如下:1、【篇名】智能电网关键技术探讨【作者】刘炜;孙振权;刘燕;【出处】内江科技2010年12期【摘要】本文阐述了智能电网的根本概念,总结了智能电网特征及关键技术;给出了智能电网建设的技术路线;指出了建设智能电网从发电、输电、配电、用电到调度等环节,在网络拓扑、通信系统、高级计量体系、需求侧管理、智能调度、电力电子设备、分布式电源接入等领域需要解决的关键技术问题。2、【篇名】智能电网技术的开展及其应用【作者】董智;【出处】山西能源与节能2010年05期【摘要】表达了包括量测、
3、通信、信息管理、调度、电力电子和分布式能源接入等智能电网的关键技术,借助美国智能电网研究应用情况,归纳和评述了智能电网技术实现的功能。3、【篇名】智能电网的关键技术【作者】王昌龙;张荣华;周定松;【出处】科技信息2010年16期【摘要】本文主要介绍了智能电网的产生背景和开展历史,阐述了智能电网的内涵和构建智能电网涉及的关键技术。列举了美国智能电网的研究情况,归纳总结智能电网技术实现的功能。展望我国智能电网的开展前景。4、【篇名】浅谈智能电网的关键技术【作者】郭大为;龚海华;【出处】科技创新导报2010年26期【摘要】简述了智能电网的开展需求和现状,分析了包括电网智能平安防御技术、状态监测技术、
4、智能用电技术、大规模储能技术在内的智能电网关键技术的重要价值和技术特点,并结合智能电网关键技术的开展趋势,展望了未来智能电网的开展理念和核心特征。5、【篇名】构建智能电网的关键技术【作者】朱涛;【出处】云南电业2010年06期【摘要】具有节能、环保、高效、经济、平安、友好等性能的智能电网,是未来电网开展趋势。目前,多个国家和地区针对智能电网开展了一系列的研究,南方电网各省区对智能电网的建设也在提速。3.2 美国工程索引(EI)3.2.1 检索式(smartpowergrids)or(SmartGrid)WNTI)AND(keytechnologyWNKY)3. 2.2检索年限2003-2013
5、3.2.3检索结果命中1093条结果,经过筛选,选择其中5条:1【篇名】Researchforthekeytechnologiesofsmartgriddispatching【作者】Hu,Hongqiong(LuZhouElectricPowerCompany,Luzhou646000,Sichuan,China);Ding,Xiaoqun;Chen,Guangyu【出处】AdvancedMaterialsResearch,v403-408,p2814-2817,2012,MEMS,NANOandSmartSystems【摘要】Thispaperstudiedthekeytechnoligie
6、sandscientificissuesofthesmartgriddispatching,combiningthestatusandtrendsofthedevelopmentofsmartgrid,andhasdoneresearchandanalysisfromthefouraspectsrespectivelyasfollow,thesecurityanddefenseofalargenetworkandpanoramicinformationandintegratedtechnologyplatformofsmartgriddispatching,themulti-levelinte
7、grationofsecuritycheckrechnology,energysavingintelligentoptimizationtechnologyandmulti-dimensionalintelligentvisualizationtechnologyoflargegrid.Summarizedtheexistingequipmentandindustrialinthepowernetworkdispatchingandgavesomesuggestionsfordevelopingthetechnologiesofsmartgriddispathching.©(2012
8、)TransTechPublications,Switzerland.(6refs.)MainHeading:SmartpowergridsControlledterms:Electricpowertransmissionnetworks-Energyconsen,ation-Securitysystems-Technology-VisualizationUncontrolledterms:Integratedtechnologies-Integrationofsecurity-Intelligentoptimization-Keytechnologies-Largenetworks-Mult
9、i-level-Powernetworks-Researchandanalysis-Scientificissues-Securitychecks-Smartgrid-Smartgriddispatching-Thesecurityanddefense-Visualizationtechnologies-VisualizationtechnologyclassificationCode:525.2EnergyConservation-706.1ElectricPowerSystems-706.1.1ElectricPowerTransmission-901EngineeringProfessi
10、on-902.1EngineeringGraphics-914.1AccidentsandAccidentPrevention2【篇名】Keytechnologyresearchonlocalnetsettingsystemofprotectiverelayingsettingforsmartgrid【作者】Hao,Wen-Bin(SichuanChengduElectricPowerBureau,Chengdu610021,China);Hong,Xing-Lü【出处】DianliXitongBaohuyuKongzhiZPowerSystemProtectionandContro
11、l,v39,n2,p80-82+87,Januarj,16,2011【摘要】Fromtheangleofsmartgriddevelopment,Somecurrentquestionsaboutthelocalnetsettingsystemofprotectiverelayingareanalyzed,forexamplenettopology,parametersmaintenance,settingsystemanddevicemanagement.Thegeneraldesigningstructureoflocalnetsettingsystemofprotectiverelayi
12、ngsettingbasedonsmartgridispresented.Thenetsettingsystemismadeupofsettingcompute,settingmanagementandrelayprotectivereconstruction.Atthesametime,keytechnologyisdiscussedincludingnettopology,supplypowerscheme,automaticopen-loop,dividinglinejoint,automaticsetting,powersupplycombinationandrelayreconstr
13、uction.Thedesignideasofsettingsystemshouldmeetthemanagementandtechnologydemandoflocalnetprotectiverelayingsettingsystemforsmartgrideffectively.(9refs.)MainHeading:RelayProtectionControlledterms:Smartpowergrids-TopologyUncontrolledterms:Automaticsettings-Designideas-Designingstructures-Devicemanageme
14、nt-Keytechnologies-Localnet-Nettopology-Openloops-Powersupply-Protectiverelaying-Protectiverelayingsetting-SmartgridclassificationCode:706ElectricTransmissionandDistribution-706.1ElectricPowerSystems-921.4CombinatorialMathematics,IncludesGraphTheory,SetTheory3、篇名Studyonsmartgridandkeytechnologysyste
15、mtopromotethedevelopmentofdistributedgeneration【作者】Huang,B.B.(StateGridEnergyResearchInstitute,Beijing,100052,China);Xie,GH.;Kong,W.Z.;1.i,Q.H.【出处】2012IEEEInnovativeSmartGridTechnologies-Asia,ISGTAsia2012,2012,2012IEEEInnovativeSmartGridTechnologies-Asia,ISGTAsia2012【摘要】Inrecentyears,facingofgrowing
16、pressureonresourcesandtheenvironment,theinevitablechoiceistoimprovethetraditionalenergyefficiencyandvigorouslyadvancetherenewableenergydevelopment.Attheaspectoftechnology,distributedgeneration(DG)technologywhichdeploysrenewableenergysourcesgivesaneffectivetechnicalapproach.Withthelevelofpenetrationo
17、fdistributedgenerationbecomeshigher,thechallengesforfuturedistributionsystemshavepresentedsmartgrid(SG),whichintegratetheadvancedsensingtechnology,communicationtechnologyandautomaticcontroltechnology,effectivelytakesadvantageofdistributedgenerationtechnology,achievesreal-timealternationandcoordinate
18、doperation,aswellasperformsthevalueandbenefitofdistributedgeneration.©2012IEEE.(8refs.)MainHeading:DistributedpowergenerationControlledterms:Automation-Control-Energyefficiency-Renewableenergyresources-Smartpowergrids-TechnologyUncontrolledterms:Automaticcontroltechnologies-Communicationtechnol
19、ogies-Coordinatedoperation-Distributedgenerationtechnologies-Distributionsystems-Keytechnologies-Renewableenergies-Renewableenergydevelopment-Renewableenergysource-Sensingtechnology-Smartgrid-ValueandbenefitclassificationCode:732ControlDevices-731AutomaticControlPrinciplesandApplications-706.1Electr
20、icPowerSystems-901EngineeringProfession-702ElectricBatteriesandFuelCells-525.2EnergyConsen,ation-525.1EnergyResourcesandRenewableEnergyIssues-615Thermoelectric,MagnetohydrodynamicandOtherPowerGenerators4、【篇名】Keytechnologyforsmartgriddispatchingaideddecision【作者】Liu,YanIe(SchoolofElectricalandElectron
21、icEngineering,NorthChinaElectricPowerUniversity,Beijing,China);Liu,Wenying;Huang,Lei【出处】PrOCeedingSofthe20116thIEEEConferenceonIndustrialElectronicsandApplications,ICIEA2011,p2313-2317,2011,Proceedingsofthe20116thIEEEConferenceonIndustrialElectronicsandApplications,ICIEA2011【摘要】Aimedatthegrowinginfo
22、rmationfloodcausedbythepowerenergymanagementsystem,thisarticlepresentsasolutionwiththreefunctions:themulti-dimensionalanalysiswhenthepowergridatnormalstate,thevisualizationdisplayatabnormalstate,andtheintelligentfaultanalysisatfaultstate.Accordingtothesethreefunctions,correspondinglypresentsthreekey
23、technologies:theCIMGPSGMLSVGmodelingmethodforpowerequipmentandspatialinformation,thevisualizationmethodforpowergridabnormalinformation,andtherapidfaultrecognitionmethodbasedonthepowerflowtranslationfactor.©2011IEEE.(15refs.)MainHeading:SmartpowergridsControlIedterms:Displaydevices-Electricpower
24、distribution-Energymanagement-Industrialelectronics-Infonnationmanagement-Informationtheory-Mathematicaltechniques-VisualizationUncontrolledterms:Faultanalysis-Faultrecognition-Keytechnologies-Modelingmethod-Multi-dimensionalAnalysis-Normalstate-Powerenergy-Powerequipment-Powerflows-Powergrids-Smart
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