Performance analysis for multi-agent coordination with partial measurable states over digital networks

Tao Li, Lihua Xie
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Abstract

In this paper, we consider the performance of a class of distributed coordination algorithms of discrete-time second-order multi-agent systems with partially measurable states and a limited communication data rate. The distributed coordinated control law is based on an encoding-decoding scheme which integrates the state observation with encoding/decoding. The convergence time, the selection of controller parameters and the performance limit are discussed. We give upper bounds of the convergence time in terms of precision, control and network parameters. We develop a linear approximation of the spectral radius of the closed-loop matrix with respect to the control gains and the algebraic connectivity of the communication graph, by which we show that for a connected network, 2-bit quantizers suffice for the exponential asymptotic synchronization of the states of the agents. Furthermore, it is shown that as the number of agents increases, the asymptotic convergence rate can be approximated as a function of the number of agents, the number of quantization levels (communication data rate) and the ratio of the algebraic connectivity to the spectral radius of the Laplacian matrix of the communication graph.
数字网络中具有部分可测量状态的多智能体协调性能分析
本文研究了一类具有部分可测状态和有限通信数据速率的离散二阶多智能体系统的分布式协调算法的性能。分布式协调控制律基于一种将状态观测与编解码相结合的编解码方案。讨论了收敛时间、控制器参数的选择和性能极限。从精度、控制和网络参数三个方面给出了收敛时间的上界。我们根据控制增益和通信图的代数连性建立了闭环矩阵谱半径的线性近似,由此我们表明,对于连接网络,2位量化器足以满足代理状态的指数渐近同步。进一步表明,随着智能体数量的增加,渐近收敛速度可以近似为智能体数量、量化层数(通信数据速率)和通信图的拉普拉斯矩阵的代数连性与谱半径之比的函数。
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