Resilient and Decentralized Control of Multi-level Cooperative Mobile Networks to Maintain Connectivity under Adversarial Environment

May 27, 2015 ยท Declared Dead ยท ๐Ÿ› IEEE Conference on Decision and Control

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Authors Juntao Chen, Quanyan Zhu arXiv ID 1505.07158 Category eess.SY: Systems & Control (EE) Cross-listed cs.DC, cs.RO Citations 32 Venue IEEE Conference on Decision and Control Last Checked 1 month ago
Abstract
Network connectivity plays an important role in the information exchange between different agents in the multi-level networks. In this paper, we establish a game-theoretic framework to capture the uncoordinated nature of the decision-making at different layers of the multi-level networks. Specifically, we design a decentralized algorithm that aims to maximize the algebraic connectivity of the global network iteratively. In addition, we show that the designed algorithm converges to a Nash equilibrium asymptotically and yields an equilibrium network. To study the network resiliency, we introduce three adversarial attack models and characterize their worst-case impacts on the network performance. Case studies based on a two-layer mobile robotic network are used to corroborate the effectiveness and resiliency of the proposed algorithm and show the interdependency between different layers of the network during the recovery processes.
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