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A Node Backup Algorithm for Fault Cascade Degradation in Virtualization Power Communication Network

Published: 10 May 2019 Publication History

Abstract

This paper studies the fault cascade degradation in virtualization power communication network. To fulfill certain requirements (e.g. reasonable network design in the network virtualization environment (NV)), we propose a network optimization algorithm: PNGA (Primary Nodes Group Algorithm) based on the complex network theory. The main goal of PNGA is promoting the robustness of the entire network. In the simulation experiment, this paper analyzes the network modeling and topological characteristics of a three-tier power grid in NV. We use the degree sorting algorithm as the control group which is widely used in power grid. Under different attack strategies, the results of the simulations we performed in this paper have shown that PNGA is superior to the rest of the algorithms in suppressing faults.

References

[1]
Ye Y, et al. A Survey on Smart Grid Communication Infrastructures: Motivations, Requirements and Challenges {J}, IEEE Communications Surveys Tutorials, 2013, 15(1): 5--20.
[2]
Jingchen Gao, Yang Xiao, Jing Liu, Wei Liang, C L PhilipChen. A survey of communication networking in Smart Grids {J}, Future Generation Computer Systems, 2012, 28: 391--404.
[3]
Ancillotti E, Bruno R, Conti M. The role of communication systems in smart grids: architectures, technical solutions and research challenges{J}, Computer Communications, 2013, 36 (17-18): 1665--1697.
[4]
Gungor V C, et al. A Survey on Smart Grid Potential Applications and Communication Requirements {J}, IEEE Transactions on Industrial Informatics. 2013, 9(1): 28--42.
[5]
Serizawa Y, et al. Present and Future ICT Infrastructures for a Smarter Grid in Japan {C}, 2010 IEEE Innovative Smart Grid Technologies (ISGT),Gaithersburg, 2010: 1--5.
[6]
Milioudis A N, G T Andreou, D P Labridis. Detection and Location of High Impedance Faults in Multi-conductor Overhead Distribution Lines Using Power Line Communication Devices {J}, IEEE Transactions on Smart Grid, 2015, 6(2): 894--902.
[7]
R. Mijumbi, J. Serrat, J.-L. Gorricho, N. Bouten, F. De Turck, and R. Boutaba, Network Function Virtualization: State-of-the-Art and Research Challenges, IEEE Communications Surveys Tutorials, vol. 18, no. 1, pp. 236--262, Firstquarter 2016.
[8]
Xiang Cheng,Sen Su,Zhongbao Zhang,Hanchi Wang,Fangchun Yang,Yan Luo,Jie Wang. Virtual network embedding through topology-aware node ranking{J}. ACM SIGCOMM Computer Communication Review. 2011
[9]
Liu Xintong; Li Yiyang; Zhao Yunwei Jiang Dairu; The implementation and application of security evaluation system of Electric Power Communication Network. 2016 2nd IEEE International Conference on Computer and Communications (ICCC).
[10]
Jiang Z, Liang M, Guo D, Enhancing network performance by edge addition International Journal of Modern Physics C 2011 22 11: 1211--1226.
[11]
Topological Vulnerability Analysis and Countermeasures of Electrical Communication Network Based on Complex Network Theory Power System Technology 2015:12.
[12]
Zhou Jing, Chen Xi, et al. Study on bandwidth analysis and capacity planning of provincial dispatching digital network{J}, Power System Technology 2012,36(5): 173--177 (in Chinese).
[13]
D. Kim, X. Gao, F. Zou, and Z. Du, Construction of Fault-Tolerant Virtual Backbones in Wireless Networks, Handbook on Security and Networks, World Scientific Publishing (edited by Y. Xiao, F.H. Li, and H. Chen), pp. 488--509, April 2011.
[14]
H. Du, L. Ding, W. Wu, D. Kim, P.M. Pardalos, and J. Willson, Connected Dominating Set in Wireless Networks, to appear in Handbook of Combinatorial Optimization, Springer (edited by P.M. Pardalos, D.-Z. Du, and R. Graham), July 2013.
[15]
Dong-Hoon S, Q Dajun, Z Junshan, Cascading Effects in Interdependent Networks {J}, IEEE Network, 2014, 28(4): 82--87.
[16]
Yunfei Guo; Ming Xu.Research on reliability evaluation model and path optimization for power communication network. 2015 5th International Conference on Electric Utility Deregulation and Restructuring and Power Technologies (DRPT).
[17]
Shi Jian; Wang Shi Wen. Research on reliability evaluation of power communication network. 2014 International Conference on Power System Technology.
[18]
Arun Das; Joydeep Banerjee; Arunabha Sen. Root Cause Analysis of Failures in Interdependent Power-Communication Networks. 2014 IEEE Military Communications Conference.

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    ICBDC '19: Proceedings of the 4th International Conference on Big Data and Computing
    May 2019
    353 pages
    ISBN:9781450362788
    DOI:10.1145/3335484
    Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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    • Shenzhen University: Shenzhen University
    • Sun Yat-Sen University

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    Association for Computing Machinery

    New York, NY, United States

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    Published: 10 May 2019

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    Author Tags

    1. Backup Optimization Algorithm
    2. Cascade Fault
    3. Complex Network
    4. Network Virtualization
    5. Power Communication Network

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