文章摘要
朱正谊,徐丙垠,Tony YIP,等.IEC 61850应用于分布式馈线自动化系统的模型[J].电力系统自动化,2018,42(23):148-154. DOI: 10.7500/AEPS20171110008.
ZHU Zhengyi,XU Bingyin,Tony YIP, et al.IEC 61850 Based Models for Distributed Feeder Automation System[J].Automation of Electric Power Systems,2018,42(23):148-154. DOI: 10.7500/AEPS20171110008.
IEC 61850应用于分布式馈线自动化系统的模型
IEC 61850 Based Models for Distributed Feeder Automation System
DOI:10.7500/AEPS20171110008
关键词: IEC 61850  分布式馈线自动化  信息模型  系统配置语言模型  通信服务映射  系统交换方法
KeyWords: IEC 61850  distributed feeder automation  information model  system configuration language(SCL)model  communication service mapping  system exchange method
上网日期:2018-09-21
基金项目:国家重点研发计划资助项目(2016YFB0900600)
作者单位E-mail
朱正谊 国网南京供电公司, 江苏省南京市 210019  
徐丙垠 山东理工大学智能电网研究院, 山东省淄博市 255049  
Tony YIP 山东科汇电力自动化股份有限公司, 山东省淄博市 255087  
陈羽 山东理工大学智能电网研究院, 山东省淄博市 255049 chenyukh@163.com 
于强强 国网南京供电公司, 江苏省南京市 210019  
李妍 国网江苏省电力有限公司经济技术研究院, 江苏省南京市 210008  
摘要:
      远传型故障指示器或功能模块可以检测配电线路各区段的故障并上传检测结果,从而为分布式馈线自动化(FA)进行故障区间定位提供判断依据。以IEC 61580-90-6技术报告所提出的故障指示功能为基础,构建基于IEC 61850的分布式馈线自动化的系统模型,提出了分布式故障区间定位、隔离和供电恢复的逻辑节点。扩展现有的IEC 61850系统配置语言(SCL)模型以描述配电网的一次拓扑和逻辑功能配置。给出IEC 61850应用于馈线自动化系统的通信服务映射。最后,提出了变电站自动化和馈线自动化系统进行数据交换的配置流程。通过应用示例表明,所提出的IEC 61850信息模型可以支持分布式馈线自动化功能和终端之间的互操作。
Abstract:
      The fault indicator or its function block can detect the fault presence and remotely transmit fault detection signals to the feeder automation(FA)system for locating the faulty section of a feeder. This paper uses the logical node of fault passage indicator in IEC 61580-90-6 to build the IEC 61850 based models for distributed FA system. The logical nodes about distributed fault location, fault isolation and service restoration functions are structured, respectively. The system configuration language(SCL)in IEC 61850 is extended to describe the primary topology and function deployments of distribution networks. The communication service mappings from IEC 61850 to specific protocols are presented according to the application requirements in FA system. Finally, the system exchange process is designed to realize the data flow configuration between substation automation system and FA system. The case study shows that the presented IEC 61850 based models can support distributed FA functions and promote the interoperability between distribution terminal devices.
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