Consensus control and initialization region optimization for leader‐following multi‐agent systems under time‐varying communication delay and consecutive packet dropouts

Tu Zhang, Guobao Zhang, Yongming Huang
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Abstract

This article is to investigate the consensus control and initialization region optimization for leader‐following multi‐agent systems with time‐varying communication delay and nonidentical consecutive packet dropouts. By combining the Bernoulli distribution model of the data loss and the Hadamard product, the control protocols affected by both communication delay and packet dropouts are utilized to formulate the consensus problem into the mean‐square stability problem of the augmented error systems. Resorting to the Lyapunov function methodology and a structure separation method, a sufficient condition to ensure the consensus is built in the form of linear matrix inequality. Relying on the given Lyapunov function and set‐membership analysis, an optimization procedure is proposed to simultaneously ensure the consensus and enlarge the estimated ellipsoid of initial conditions. The validity of the provided method is illustrated through a comparative simulation.
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时变通信延迟和连续丢包条件下领导者-跟随型多代理系统的共识控制和初始化区域优化
本文旨在研究具有时变通信延迟和非相同连续丢包的领导者-跟随多代理系统的共识控制和初始化区域优化问题。结合数据丢失的伯努利分布模型和哈达玛乘积,利用受通信延迟和丢包影响的控制协议,将共识问题表述为增强误差系统的均方稳定性问题。利用 Lyapunov 函数方法和结构分离方法,以线性矩阵不等式的形式建立了确保共识的充分条件。根据给定的 Lyapunov 函数和集合成员分析,提出了一种优化程序,以同时确保共识和扩大初始条件的估计椭圆。通过比较模拟说明了所提供方法的有效性。
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