DocumentCode :
231307
Title :
Design of robust dependent networks against flow-based cascading failures
Author :
Ouboter, T.M. ; Worm, D.T.H. ; Kooij, R.E. ; Huijuan Wang
Author_Institution :
TNO, Delft, Netherlands
fYear :
2014
fDate :
17-19 Nov. 2014
Firstpage :
54
Lastpage :
60
Abstract :
In this paper we propose strategies to increase the robustness of a communication network which depends on the proper functioning of an electricity network. The strategies involve selecting nodes of the communication network and removing their dependency on the electricity network. Compared to existing literature on this topic, such as Schneider et al. [1], we use a more realistic model of the electricity network by taking the essential characteristics of the power flow into account, instead of considering purely the topological structure. The effect of the flow-based cascading failures originating from the electrical grid, on the communication network is studied, where the coupling between those networks plays an important role. We have computed the performance of our proposed selection strategies by averaging over many configurations of communication networks, which are modelled both as scale-free networks and as Erdös-Rényi random graphs, applied to an electricity network formed by the IEEE 118 bus test system. We show that a hybrid strategy, based on the degree of the communication nodes and the failure probabilities of the electricity nodes, give a significant improvement over a random selection strategy, as well as over other strategies we proposed. Our method is also tested on a real-world interdependent network: the high voltage electricity grid in Italy coupled with a communication network, inspired by the Italy blackout in 2003.
Keywords :
complex networks; failure analysis; load flow; power grids; telecommunication links; telecommunication network reliability; Erdös-Rényi random graphs; IEEE 118 bus test system; communication network; communication nodes; electrical grid; electricity network; electricity nodes; failure probabilities; flow-based cascading failures; hybrid strategy; power flow; random selection strategy; real-world interdependent network; scale-free networks; selection strategies; Communication networks; Electricity; Load flow; Network topology; Power system faults; Power system protection; Robustness; Network robustness; cascading failure; dependent network; network design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Reliable Networks Design and Modeling (RNDM), 2014 6th International Workshop on
Conference_Location :
Barcelona
Print_ISBN :
978-1-4799-7039-1
Type :
conf
DOI :
10.1109/RNDM.2014.7014931
Filename :
7014931
Link To Document :
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