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On Robustness Analysis of a Dynamic Average Consensus Algorithm to Communication Delay

机译:关于通信延迟动态平均共识算法的鲁棒性分析

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This paper studies the robustness of a dynamic average consensus algorithm to communication delay over strongly connected and weight-balanced (SCWB) digraphs. Under delay-free communication, the algorithm of interest achieves a practical asymptotic tracking of the dynamic average of the time-varying agents' reference signals. For this algorithm, in both its continuous-time and discrete-time implementations, we characterize the admissible communication delay range and study the effect of the delay on the rate of convergence and the tracking error bound. Our study also includes establishing a relationship between the admissible delay bound and the maximum degree of SCWB digraphs. We also show that for delays in the admissible bound, for static signals, the algorithms achieve perfect tracking. Moreover, when the interaction topology is a connected undirected graph, we show that the discrete-time implementation is guaranteed to tolerate at least one step delay. Simulations demonstrate our results.
机译:本文研究了动态平均共识算法在强型和体重平衡(SCWB)数字上的通信延迟的鲁棒性。在无延时通信下,利益算法实现了时变代理参考信号的动态平均值的实际渐近跟踪。对于该算法,在其连续时间和离散时间实现中,我们将可允许的通信延迟范围表征,并研究延迟对收敛速率和跟踪误差绑定的影响。我们的研究还包括建立可允许延迟绑定与SCWB数字的最大程度之间的关系。我们还表明,对于静态信号的可接受限制的延迟,算法可以实现完美的跟踪。此外,当相互作用拓扑是连接的无向图的时,我们表明保证了离散时间实现以容忍至少一个步骤延迟。仿真展示了我们的结果。

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