Redundancy, diversity, and connectivity to achieve multilevel network resilience, survivability, and disruption tolerance invited paper

2014 ◽  
Vol 56 (1) ◽  
pp. 17-31 ◽  
Author(s):  
James P. G. Sterbenz ◽  
David Hutchison ◽  
Egemen K. Çetinkaya ◽  
Abdul Jabbar ◽  
Justin P. Rohrer ◽  
...  
2019 ◽  
Vol 9 (11) ◽  
pp. 2256
Author(s):  
Yasmany Prieto ◽  
Nicolás Boettcher ◽  
Silvia Elena Restrepo ◽  
Jorge E. Pezoa

Current data networks are highly homogeneous because of management, economic, and interoperability reasons. This technological homogeneity introduces shared risks, where correlated failures may entirely disrupt the network operation and impair multiple nodes. In this paper, we tackle the problem of improving the resilience of homogeneous networks, which are affected by correlated node failures, through optimal multiculture network design. Correlated failures regarded here are modeled by SRNG events. We propose three sequential optimization problems for maximizing the network resilience by selecting as different node technologies, which do not share risks, and placing such nodes in a given topology. Results show that in the 75% of real-world network topologies analyzed here, our optimal multiculture design yields networks whose probability that a pair of nodes, chosen at random, are connected is 1, i.e., its ATTR metric is 1. To do so, our method efficiently trades off the network heterogeneity, the number of nodes per technology, and their clustered location in the network. In the remaining 25% of the topologies, whose average node degree was less than 2, such probability was at least 0.7867. This means that both multiculture design and topology connectivity are necessary to achieve network resilience.


Author(s):  
Xiangdong Xu ◽  
Anthony Chen ◽  
Guangming Xu ◽  
Chao Yang ◽  
William H.K. Lam

IEEE Access ◽  
2018 ◽  
Vol 6 ◽  
pp. 61633-61639 ◽  
Author(s):  
Diansheng Luo ◽  
Yongwei Xia ◽  
Yuanyuan Zeng ◽  
Canbing Li ◽  
Bin Zhou ◽  
...  

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