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Consensus analysis with large and multiple communication delays using spectral delay space concept

机译:使用频谱延迟空间概念对大和多个通信延迟进行共识分析

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In this study, we consider the consensus problem for a group of second-order agents interacting under a fixed, undirected communication topology. Communication lines are affected by two rationally independent delays. The first delay is assumed to be in the position information channels, whereas the second delay is in the velocity information exchange. The delays are assumed to be large and uniform throughout the entire network. The stability analysis of such systems becomes quickly intractable as the number of agents increases and the delays enlarge. To resolve this dilemma, we first reduce the complexity of the problem dramatically, by decomposing the characteristic equation of the system into a set of second-order factors. Then, we assess the stability of the resulting subsystems exactly and exhaustively in the domain of the time delays using the cluster treatment of characteristic roots (CTCR) paradigm. CTCR requires the determination of all the potential stability switching loci in the domain of the delays. For this, a surrogate domain, called the spectral delay space (SDS), is used. The result is a computationally efficient stability analysis of the given dynamics within the domain of the delays. Illustrative cases are provided to verify the analytical conclusions. On these examples, we also study the consensus speeds through eigenvalue analysis.
机译:在这项研究中,我们考虑了在固定的,无向的通信拓扑下交互的一组二阶智能体的共识问题。通信线路受到两个合理独立延迟的影响。假定第一延迟在位置信息信道中,而第二延迟在速度信息交换中。假定延迟在整个网络中很大且均匀。随着代理数量的增加和延迟的增加,此类系统的稳定性分析变得迅速棘手。为了解决这个难题,我们首先将系统的特征方程分解为一组二阶因子,从而大大降低了问题的复杂性。然后,我们使用特征根(CTCR)范式的群集处理在时延范围内准确,详尽地评估了所得子系统的稳定性。 CTCR需要确定延迟域中所有潜在的稳定性切换基因座。为此,使用了一个替代域,称为频谱延迟空间(SDS)。结果是在延迟域内对给定动力学进行了计算有效的稳定性分析。提供了说明性案例以验证分析结论。在这些示例中,我们还通过特征值分析研究了共识速度。

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