Formation of robust multi-Agent networks through self-organizing random regular graphs

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Abstract

Multi-Agent networks are often modeled as interaction graphs, where the nodes represent the agents and the edges denote some direct interactions. The robustness of a multi-Agent network to perturbations such as failures, noise, or malicious attacks largely depends on the corresponding graph. In many applications, networks are desired to have well-connected interaction graphs with relatively small number of links. One family of such graphs is the random regular graphs. In this paper, we present a decentralized scheme for transforming any connected interaction graph with a possibly non-integer average degree of k into a connected random m-regular graph for some m ϵ [k+k ] 2. Accordingly, the agents improve the robustness of the network while maintaining a similar number of links as the initial configuration by locally adding or removing some edges.

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Yasin Yazicioǧlu, A., Egerstedt, M., & Shamma, J. S. (2015). Formation of robust multi-Agent networks through self-organizing random regular graphs. IEEE Transactions on Network Science and Engineering, 2(4), 139–151. https://doi.org/10.1109/TNSE.2015.2503983

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