Controllability properties for multi-agent linear systems. A geometric approach

Q3 Physics and Astronomy
M. I. García-Planas
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引用次数: 0

Abstract

This work addresses the controlability of a class of multi-agent linear systems that they are interconnected via communication channels. Multiagent systems have attracted much attention because they have great applicability in multiple areas, such as power grids, bioinformatics, sensor networks, vehicles, robotics and neuroscience, for example. Consequently, they have been widely studied by scientists in different fields specially in the field of control theory. Recently has taken interest to analyze the control properties as consensus controllability of multi-agent dynamical systems motivated by the fact that the architecture of communication network in engineering multi-agent systems is usually adjustable. In this paper, the control condition is analyzed under geometrical point of view. in the case of multiagent linear systems that can be described by k agents with dynamics x''_i = A_i x_i + B_i u_i, i = 1, . . . , k.
多智能体线性系统的可控性。几何方法
这项工作解决了一类通过通信通道相互连接的多智能体线性系统的可控性。多智能体系统因其在电网、生物信息学、传感器网络、车辆、机器人和神经科学等多个领域具有很强的适用性而备受关注。因此,它们被不同领域的科学家,特别是控制理论领域的科学家广泛研究。由于工程多智能体系统的通信网络结构通常是可调的,近年来人们对多智能体动态系统的共识可控性控制特性进行了研究。本文从几何角度对控制条件进行了分析。在多智能体线性系统的情况下,可以用k个智能体描述动态x“_i = A_i x_i + B_i u_i, i = 1,…”, k。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cybernetics and Physics
Cybernetics and Physics Chemical Engineering-Fluid Flow and Transfer Processes
CiteScore
1.70
自引率
0.00%
发文量
17
审稿时长
10 weeks
期刊介绍: The scope of the journal includes: -Nonlinear dynamics and control -Complexity and self-organization -Control of oscillations -Control of chaos and bifurcations -Control in thermodynamics -Control of flows and turbulence -Information Physics -Cyber-physical systems -Modeling and identification of physical systems -Quantum information and control -Analysis and control of complex networks -Synchronization of systems and networks -Control of mechanical and micromechanical systems -Dynamics and control of plasma, beams, lasers, nanostructures -Applications of cybernetic methods in chemistry, biology, other natural sciences The papers in cybernetics with physical flavor as well as the papers in physics with cybernetic flavor are welcome. Cybernetics is assumed to include, in addition to control, such areas as estimation, filtering, optimization, identification, information theory, pattern recognition and other related areas.
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