随机丢包的多智能体系统的领导一致性

Xiang Gong, Yaodong Pan, Jianning Li, H. Su
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引用次数: 8

摘要

本文旨在开发一种新的多智能体系统在网络通信链路故障情况下的共识算法或协议。将系统动力学定义为一个双积分器系统,MAS的拓扑结构用图论建模。采用伯努利分布表示运行过程中的数据丢失。利用李雅普诺夫方法和线性矩阵不等式(lmi)技术,给出了稳定控制器设计的充分条件。分析了给定lmi的可行性,以确保稳定化控制器的设计,从而保证MAS达到共识。成功地进行了一组智能体的领导跟随数值模拟,验证了新共识算法的有效性。研究结果表明,在数据丢失概率高达95%的情况下,agent达成共识的时间较长,但数据丢失率越高,agent达成共识的时间越长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Leader following consensus for multi-agent systems with stochastic packet dropout
This paper is to develop a novel consensus algorithm or protocol for multi-agent systems in the event of communication link failure over the network. System dynamics are defined as a double-integrator system with the topology of MAS modeled by the graph theory. Bernoulli distribution is applied to represent the data dropout during operation. The sufficient conditions for the stabilization controller design is developed by Lyapunov-based methodologies and Linear matrix inequality (LMIs) techniques. The feasibility of the given LMIs is analyzed to ensure the stabilization controller design, which ensures the MAS to achieve the consensus. Leader-following numerical simulations with a group of agents are successfully conducted to demonstrate the effectiveness of the novel consensus algorithm in this paper. The results are studied to show that the consensus achievement is incorporating with the data loss probability up to 95%, however the higher data loss rate may cause longer time for agents to achieve consensus.
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