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Convergence Rate of Distributed Consensus with Nonuniform Delays

机译:具有非均匀时滞的分布式共识的收敛速度

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Motivated by broad applications in various fields of engineering, we study distributed consensus problems over a network of nodes, where the goal is to seek a consensus on the local variables at the nodes. Our main contribution is to analyze the convergence rate of distributed consensus methods in the presence of inter-node communication delays, which is one of the most fundamental issues in distributed systems. In particular, we provide an explicit formula for the convergence rate of such methods, which depends on the network topology and the delay constants. Our main technique is to utilize the discrete-time delayed version of the Grönwall-Bellman inequality, which directly takes into account the impact of delays. Finally, we provide numerical simulations to illustrate our theoretical results.
机译:受工程领域各个领域的广泛应用的启发,我们研究了节点网络上的分布式共识问题,目的是在节点上寻求局部变量的共识。我们的主要贡献是在存在节点间通信延迟的情况下分析分布式共识方法的收敛速度,这是分布式系统中最基本的问题之一。特别是,我们为此类方法的收敛速度提供了一个明确的公式,该公式取决于网络拓扑和延迟常数。我们的主要技术是利用Grönwall-Bellman不等式的离散时间延迟形式,它直接考虑了延迟的影响。最后,我们提供数值模拟来说明我们的理论结果。

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