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作 者:刘日亮 李晓露 杜建 陆一鸣 丁一[4] LIU Riliang;LI Xiaolu;DU Jian;LU Yiming;DING Yi(State Grid Corporation of China,Beijing 100031,China;College of Electrical Engineering,Shanghai University of Electric Power,Shanghai 200090,China;State Grid Shanghai Energy Interconnection Research Institute,Shanghai 201210,China;State Grid Tianjin Electric Power Company,Tianjin 300010,China)
机构地区:[1]国家电网有限公司,北京100031 [2]上海电力大学电气工程学院,上海200090 [3]国网上海能源互联网研究院有限公司,上海201210 [4]国网天津市电力公司,天津300010
出 处:《电力信息与通信技术》2022年第7期18-25,共8页Electric Power Information and Communication Technology
基 金:国家电网有限公司科技项目资助“营配调信息模型边界建模及其一致性检测技术研究”(SGTJDK00DWJS1900100)。
摘 要:一体化配网模型是配电网全景感知、弹性可控、主配协同的基础,一体化配网模型的完整性和正确性已成为配电网业务数字转型的一个关键问题。文章首先分析营配调贯通常规业务及新型电力系统中的新业务,从提升营配调业务的互操作性角度,提出基于智能电网体系架构模型(smart grid architecture model,SGAM)的营配调贯通一体化模型构建方法,建立信息互操作层上的营配调贯通模型;然后,以故障定位、隔离与恢复(FLISR)为例进行用例分析,分析结果映射到SGAM的组件互操作层、信息互操作层;最后,验证模型构建方法的有效性。The integrated distribution network model is the basis of panoramic situation awareness,flexible controllability,and coordination of the transmission and distribution network.The integrity and correctness of the distribution network model have become a key issue in the digital transformation of the distribution network business.The convention businesses and the new businesses in the new power system with renewable energy as the main body are firstly analyzed for the integrated distribution management.From the perspective of improving the interoperability of the integrated distribution management business,an integrated marketing,distribution and dispatching modeling method based on the smart grid architecture model(SGAM)is proposed,and an integrated distribution network model in the information interoperability layer is established.The use case analysis is carried out with the fault location,isolation and recovery(FLISR)as an example,and the analysis results are mapped to the component interoperability layer and information interoperability layer of the SGAM,to verify the effectiveness of the modeling method.
关 键 词:配电管理系统 一体化配网模型 智能电网体系架构模型 互操作性 用例分析
分 类 号:TM73[电气工程—电力系统及自动化]
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