Title :
Resilient consensus protocol in the presence of trusted nodes
Author :
Abbas, W. ; Vorobeychik, Yevgeniy ; Koutsoukos, Xenofon
Author_Institution :
Inst. for Software Integrated Syst., Vanderbilt Univ., Nashville, TN, USA
Abstract :
In this paper, we propose a scheme for a resilient distributed consensus problem through a set of trusted nodes within the network. Currently, algorithms that solve resilient consensus problem demand networks to have high connectivity to overrule the effects of adversaries, or require nodes to have access to some non-local information. In our scheme, we incorporate the notion of trusted nodes to guarantee distributed consensus despite any number of adversarial attacks, even in sparse networks. A subset of nodes, which are more secured against the attacks, constitute a set of trusted nodes. It is shown that the network becomes resilient against any number of attacks whenever the set of trusted nodes form a connected dominating set within the network. We also study a relationship between trusted nodes and the network robustness. Simulations are presented to illustrate and compare our scheme with the existing ones.
Keywords :
network theory (graphs); adversarial attacks; connected dominating set; nonlocal information access; resilient consensus protocol; resilient distributed consensus problem; trusted nodes notion; Buildings; Network topology; Protocols; Resilience; Robustness; Topology; Tree graphs; Resilience; adversary; consensus; dominating set; graph robustness;
Conference_Titel :
Resilient Control Systems (ISRCS), 2014 7th International Symposium on
Conference_Location :
Denver, CO
DOI :
10.1109/ISRCS.2014.6900100