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作 者:迟福建 葛磊蛟 汪宇倩 何平[1] 王哲[1] 李桂鑫[1] CHI Fu-jian;GE Lei-jiao;WANG Yu-qian;HE Ping;WANG Zhe;LI Gui-xin(State Grid Tianjin Electric Power Company,Tianjin 300055,China;School of Electrical Information and Engineering,Tianjin University,Tianjin 300072,China)
机构地区:[1]国网天津市电力公司,天津300055 [2]天津大学电气自动化与信息工程学院,天津300072
出 处:《电工电能新技术》2020年第5期66-73,共8页Advanced Technology of Electrical Engineering and Energy
基 金:国家重点研发计划项目(2017YFB0903300);国家电网公司科技项目(SG-ZX2018-01)。
摘 要:综合能源服务是电网企业未来业务转型的重要方向。针对综合能源服务水平影响因素多而定量分析难的问题,本文中提出了一种基于网络层次分析法(ANP)的综合能源服务水平综合评估方法。首先,从管理水平、经济效益、运营效果、社会影响、可持续发展水平5个方面构建了综合能源服务水平综合评价指标体系,共包含5个一级指标和16个二级指标;其次,为实现综合评价,选用ANP方法求解所提出的综合能源服务水平评价指标的对应权重;最后,通过典型案例分析,获知综合能源服务水平综合评估过程中,经济效益和运营效果为一级指标中的关键因素,二级指标中的能源转换效率、网络综合损耗程度、用户舒适度和地区经济影响水平是重要指标,以期为未来综合能源服务提供商的运营和发展提供借鉴。Integrated energy service is an important direction of future business transformation of power grid enterprises. Aiming at the problem that there are many factors affecting the comprehensive energy service level and it is difficult to quantitatively analyze them,this paper proposes a comprehensive evaluation method of the comprehensive energy service level based on ANP. Firstly,a comprehensive evaluation index system of comprehensive energy service level is constructed from five aspects: management level,economic benefit,operation effect,social impact and sustainable development level,which includes 5 first-level indicators and 16 second-level indicators. Secondly,in order to achieve comprehensive evaluation,ANP method is used to solve the corresponding weight of the proposed comprehensive energy service level evaluation index. Through the analysis of typical cases,it is known that the economic benefit and operation effect are the key factors among the first-level indicators,and the energy conversion efficiency,network comprehensive loss,user comfort and regional economic impact are the important indicators among the second-level indicators,so as to provide reference for the operation and development of future integrated energy service providers.
分 类 号:TM7[电气工程—电力系统及自动化]
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