交换拓扑下信道衰落的多智能体系统的h∞前导-跟随一致性:半马尔可夫核方法

Haoyue Yang, Hao Zhao, Zhuping Wang, Xue Zhou
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引用次数: 1

摘要

研究了交换拓扑下信道衰落的离散多智能体系统的领导-跟随一致性问题。首先,建立了基于拓扑交换的信道衰落模型来描述agent间通信信道的信息衰落,同时考虑了从leader到follower和从follower到follower的信道衰落;它比现有文献中只考虑follower-to-follower衰落的模型更具通用性。对于离散多智能体系统,现有文献通常采用时间序列或马尔可夫过程来表征拓扑切换,而忽略了更一般的半马尔可夫过程。基于半马尔可夫过程的优点和性质,采用离散半马尔可夫跳跃过程对网络拓扑切换进行建模。然后,利用处理离散半马尔可夫跳变系统的半马尔可夫核方法,给出了保证闭环系统前导-跟随均方一致的一些新的充分条件。在此基础上,利用随机Lyapunov稳定性理论提出分布式共识协议,使底层系统能够达到h∞共识性能指标。此外,将该方法推广到半马尔可夫交换拓扑的半马尔可夫核不完全可达的情况下。最后,通过仿真实例验证了本文的研究结果。与已有文献相比,本文的方法更加有效和通用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ℋ∞ leader-following consensus of multi-agent systems with channel fading under switching topologies: a semi-Markov kernel approach
This paper focuses on the leader-following consensus problem of discrete-time multi-agent systems subject to channel fading under switching topologies. First, a topology switching-based channel fading model is established to describe the information fading of the communication channel among agents, which also considers the channel fading from leader to follower and from follower to follower. It is more general than models in the existing literature that only consider follower-to-follower fading. For discrete multi-agent systems, the existing literature usually adopts time series or Markov process to characterize topology switching while ignoring the more general semi-Markov process. Based on the advantages and properties of semi-Markov processes, discrete semi-Markov jump processes are adopted to model network topology switching. Then, the semi-Markov kernel approach for handling discrete semi-Markov jumping systems is exploited and some novel sufficient conditions to ensure the leader-following mean square consensus of closed-loop systems are derived. Furthermore, the distributed consensus protocol is proposed by means of the stochastic Lyapunov stability theory so that the underlying systems can achieve ℋ∞ consensus performance index. In addition, the proposed method is extended to the scenario where the semi-Markov kernel of semi-Markov switching topologies is not completely accessible. Finally, a simulation example is given to verify the results proposed in this paper. Compared with the existing literature, the method in this paper is more effective and general.
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