Study on Protective Data Flow of Intelligent Substation Based on IEC 61850

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Abstract:

This paper analyzes protective data flow in normal state and after failure with IEC 61850 D2-2 type substation. Focusing on the flow which conform to IEC 61850 Ethernet protocol by using Optimized Network Engineer Tools (OPNET) simulator, the protective data in D2-2 type substation is simulated based on IEEE 802.1Q priority-tag and VLAN technology. A sample Substation Automatic System (SAS) network is constructed, and the main factors affecting the delay of protective data is discussed in detail.

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Periodical:

Advanced Materials Research (Volumes 614-615)

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966-970

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December 2012

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Xiang Gao. Application technology of digital substaion[M]. Beijing: CEPP, 2008. (In Chinese)

Google Scholar

[2] IEC 61850-5 Communication networks and systems in substations,part5: Communication requirements for functions and device models[S]. 2003.

Google Scholar

[3] Sidhu T S, Injeti S, Kanabar M G,Parikh P P.Packet schedulling of GOOSE message in IEC 61850 based substation intelligent electronic devices(IEDS)[C]//Power and Energy Society General Meeting. 25-29 July 2010: 1-8.

DOI: 10.1109/pes.2010.5590065

Google Scholar

[4] IEC 61850-1 Communication networks and systems in substations,part1:Introduction and overview[S].2003.

Google Scholar

[5] Min Chen.OPNET network simulation[M]. Beijing: Tsinghua University Press,2004.(In Chinese)

Google Scholar

[6] Xiaojie Fang, Xiayi Ji, Zhigang Lu. Study on relaying protection communication network in digital substation using OPNET simulation[J]. Power System Protection and Control, 2010,38(23):137-140.(In Chinese)

Google Scholar

[7] Sidhu T S,Yin Yujie.Modeling and simulation for performance evaluation of IEC61850-based substation communication systems[J].IEEE Transactions on Power Delivery,2007,22(3):1482-1489.

DOI: 10.1109/tpwrd.2006.886788

Google Scholar

[8] Jianbo Xin, Xianzhong Duan. A transfer scheme based on priority-tag in switched Ethernet for substation process-levle[J]. Power System Technology, 2004, 22(28): 26-30. (In Chinese)

Google Scholar

[9] Zhidan Zhang, Xiaoqing Huang, Yijia Cao, Jie He, Yang Yang. Comprehensive data flow analysis and communication network simulation for virtual local area network-based substation[J].Power System Technology, 2011, 35(5):204-209. (In Chinese)

Google Scholar

[10] Yan Hu, Guangzhao Zhang. Study of Pareto ON/OFF model and self-similar traffic flow[J]. Journal of circuits and systems,2001,6(3):72-77. (In Chinese)

Google Scholar

[11] Zaijun Wu,Minqiang Hu,Yansen Du. Analysis of realtime performance of communication network in substations[J]. Automation of Electric Power Systems,2005,29(8):45-49(in Chinese).

Google Scholar

[12] IEC 61850-9-2 Communication networks and systems in substations,part9-2:Specific communication service mapping(SCSM)-sampled values over ISO/IEC 8802-3[S].2003.

DOI: 10.3403/30145362u

Google Scholar

[13] Haizhu Wang, Zexiang Cai, Zhongyang Su, Zhihan Zhu. Analysis of realtime performances of process-level networks based on IEC 61850 SCSM Model[C]//Electric Utility Deregulation and Restructuring and Power Technologies(DRPT), 2011 4th International Conference.6-9 July 2011:1820-1824.

DOI: 10.1109/drpt.2011.5994194

Google Scholar