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文章摘要
基于层次分析法的输电网能效评估方法研究
Study on the Method of Transmission Efficiency Evaluation Based on AHP
Received:October 11, 2014  Revised:April 13, 2015
DOI:
中文关键词: 层次分析法  输电网  指标体系:能效评估
英文关键词: the  analytic hierarchy  process,transmission  network,index  system, energy  efficiency assessment
基金项目:
Author NameAffiliationE-mail
FU Ke-xin* School of electrical and electronic engineering,North China Electric Power University Baoding Chinese Petroleum Survey and Design Institute of Jilin Oilfield Company Songyuan 435407346@qq.com 
PENG Peng Shenzhen Power Supply Bureau Co. Ltd.  
KONG Jing The Ministry of environmental protection of nuclear and radiation safety center  
LÜ Fang-cheng School of electrical and electronic engineering, North China Electric Power University  
XIE Qing School of electrical and electronic engineering,North China Electric Power University Baoding  
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中文摘要:
      对于输电网能效评估方法的研究,有利于输电网节能潜力的挖掘,有利于输电网能效水平的提升,有利于节能技改资金配置的优化。本文基于对输电网节能指标体系的研究,提出了适用于电网的静态、动态和技术经济分析的综合能效评估方法。首先通过梳理与能效相关的国内外先进标准,构建了指标体系,指标涵盖了电网规划、设备参数及设备运行状态等评价指标。然后应用层次分析法(The Analytic Hierarchy Process, AHP),将能效评估体系中各指标间的相对重要性用1~9比例标度构造出判断矩阵,准确计算出了各个能效指标的权重系数,结合单项指标状态值,得到被评估输电网的综合能效分值。最后根据综合分值,确定输电网能效等级,从而找出输电网能效的薄弱环节。运用该评估方法对某输电网进行了能效评估。
英文摘要:
      ResearchSonSSenergySefficiencySassessmentSSmethodsSofSpowerStransmissionSnetwork,SisSbeneficialStoSenergy-savingSpotentialSdevelopmentSandSelevationSofSenergySefficiencySlevelSofSpowerStransmissionSnetworks,SasSwellSasScapitalSallocationSoptimizationSofSenergySsavingSandStechnicalSimprovement.SBasedSonStheSstudySofSpowerStransmissionSnetworks"SenergySsavingSindexSsystems,StheScomprehensiveSenergySefficiencySassessmentSmethodsSapplicableStoSstaticSanalysis,SdynamicSanalysisSandStechnicalSeconomySanalysisSforSpowerSgridsSareSputSforward.SFirstSofSall,StheSindexSsystemSisSestablishedSthroughStheSintegrationSofSadvancedSstandardsSbothShomeSandSabroadSrelatedStoSenergySefficiency,SwhichSincludesSassessmentSindexesSsuchSasSgridSplanning,SparameterSofSapparatusSandSequipmentSoperationalScondition.SSecondly,SforStheSrelativeSimportanceSamongSallSindexes,StheSAnalyticSHierarchySProcessSisSappliedStoSuseS1~9SratioSscaleStoSestablishSjudgmentSmatrix,SandSthenSweightScoefficientsSofSallSenergySindexesSareSfiguredSoutSaccurately.SCombinedSwithSstatusSvalueSofSsingleSindex,StheScomprehensiveSenergySefficiencySscoresSofSgridSbeingSassessedSareSableStoSbeSobtained.SLastly,StheSefficiencySlevelSofSpowerStransmissionSnetworkScanSbeSdeterminedSaccordingStoScomprehensiveSscores,SsoSthatStheSweakSlinksSofSenergySefficiencySofSpowerStransmissionSnetworkSareSfoundSout.SThisSassessmentSmethodSisSusedStoSevaluateSwhetherScertainSpowerStransmissionSnetworkShasSundergoneSenergySefficiencySassessment.
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