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作 者:Ying Li Weiquan Wang Liang Zhang Zhujian Liang Zhenli Xu Yuansheng Liang
机构地区:[1]Zhaoqing Power Supply Bureau of Guangdong Grid Co.Ltd.,Zhaoqing,526000,P.R.China [2]School of Electric Power Engineering,South China University of Technology,Guangzhou 510640,P.R.China
出 处:《Global Energy Interconnection》2023年第6期772-784,共13页全球能源互联网(英文版)
基 金:supported by the 2020 Infrastructure Engineering Technology Innovation Project;the“Intelligent Substation”Supporting Technology Research Project(031200WS22200001)。
摘 要:The reliability analysis of vertically integrated protection devices is crucial for designing International Electrotechnical Commission(IEC)61850-based substations.This paper presents the hardware architecture of a four-inone vertically integrated device and the information transmission path of each function based on the functional information transmission chain of protection devices,measurement and control devices,merging units,and intelligent terminals.Additionally,a reliability analysis model of the protection device and its protection system is constructed using the fault tree analysis method while considering the characteristics of each module of the vertically integrated device.The stability probability of the protection system in each state is analyzed by combining the state-transfer equations of line and busbar protection with a Markov chain.Finally,the failure rate and availability of the protection device and its protection system are calculated under different ambient temperatures using a 110 kV intelligent substation as an example.The sensitivity of each device module is analyzed.
关 键 词:Vertical integration of secondary system device Reliability of secondary system IEC 61850-based substation Relay protection
分 类 号:TM63[电气工程—电力系统及自动化]
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