A Brief Overview of Service Restoration in Smart Distribution Network

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Service restoration which is an important part in smart distribution network has become more important in improving the reliability to customers and reducing the interruption loss. The mathematical model including objective functions and electrical constraints are overviewed in the paper. Three algorithms based on heuristic search, artificial intelligence and combinational method are elaborated separately. Finally, the problems needing to solve in future are discussed combining with the research status and the recent advance in distribution network.

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3747-3750

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September 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] X. LI, Q.W. GONG and Y. HU: Electric Power Automation Equipment, Vol. 31(2011)No. 8, p, 108.

Google Scholar

[2] T.L. ZANG, J.C. ZHONG and Z.Y. HE: Power System Technology, Vol. 36(2012)No. 5, p.251.

Google Scholar

[3] Y. YZHOU, Q. ZHOU and Y.M. LIU: Journal of Chongqing University, Vol. 33(2010)No. 5, p.78.

Google Scholar

[4] X.C. HUANG, L.Z. ZHANG and Gareth Taylor: Automation of Electric Power Systems, Vol. 34(2010)No. 17, p.22.

Google Scholar

[5] H.F. LI, Y. ZHANG and G.J. QIAN: Automation of Electric Power Systems, (2010), p.34.

Google Scholar

[6] L. ZHEN, Z.H. BIE and X.L. WANG: Electric Power Automation Equipment, Vol. 24(2004) No. 2, p.16.

Google Scholar

[7] H.B. ZHANG, X.Y. ZHANG, and W.W. TAO: Power System Technology, Vol. 34(2010)No. 7, p.103.

Google Scholar

[8] S.Q. SHENG, Z. Wang: Power System Technology, Vol. 32(2008)No. 8, p.42.

Google Scholar

[9] H.F. LI, Y. ZHANG and G.J. QIAN: Automation of Electric Power Systems, (2001), p.34.

Google Scholar

[10] W.C. WU, B.M. ZHANG: Automation of Electric Power Systems, Vol. 27(2003)No. 12, p.50.

Google Scholar

[11] G. DUAN, X.Y. YU: Automation of Electric Power Systems, (2001), p.14.

Google Scholar

[12] S.Q. SHENG, Z.R. LIANG and W.Q. ZHANG: Automation of Electric Power Systems, (2001), p.53.

Google Scholar

[13] Kalyanmoy Deb, Amrit Pratap and Sameer Agarwal: IEEE Transactions on Evolutionary Computation, Vol. 6( 2002)No. 2, p.182.

Google Scholar

[14] X.C. HUANG, Gareth Taylor: Automation of Electric Power Systems, Vol. 35(2011)No. 6, p.40.

Google Scholar

[15] W.Z. GONG, X.Y. FANG: Power System Protection and Control, Vol. 40(2012)No. 6, p.104.

Google Scholar

[16] S.X. WANG, X, J, LI, and Z.X. XIAO: Automation of Electric Power Systems, Vol. 31 (2007) No. 10, p.61.

Google Scholar

[17] L.J. YANG, J.C. LIU: Automation of Electric Power Systems, Vol. 36(2012)No. 6, p.85.

Google Scholar

[18] Y.F. TANG, H.J. SHI and L. XIAO: Journal of Guizhou University of Technology, Vol. 34 (2005)No. 4, p.45.

Google Scholar

[19] C.F. YANG, X.F. LE: Electric Power Automation Equipment, Vol. 21(2001)No. 11, p.28.

Google Scholar

[20] Q. MA, Y.H. YANG and W.Y. LIU: Power System Technology, Vol. 29(2005)No. 3, p.24.

Google Scholar

[21] Z.G. LU, Y.X. DONG: Automation of Electric Power Systems, Vol. 30(2006)No. 24, p.39.

Google Scholar

[22] L.M. ZHANG, Q. MA and Z.K. LI: Proceedings of the CSU-EPSA, Vol. 22(2010)No. 1, p.60.

Google Scholar