Distributed Optimal Control of Multiagent Systems Under Control Variation Cost

IF 4 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Qingyun Zhang;Fei Chen;Jing Yuan;Zhongxin Liu;Gang Feng
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引用次数: 0

Abstract

In this article, we aim at developing distributed optimal control for multiagent systems over an undirected network topology. The distinguishing feature of this work in comparison to the existing literature is that the cost of control variation is taken into account, which is expected to yield a better control strategy for engineering applications. The inclusion of control variation in the cost function presents significant challenges in both the design of the corresponding distributed optimal control and the convergence analysis of the resulting closed-loop system. By properly designing the network cost, it is shown that the optimal control law always exists, and the explicit expression of the optimal control gain is given. These results offer some useful insights into the distributed optimal control of multiagent systems, in terms of the tuning of control parameters and design of network topologies. A numerical example is provided to validate the theoretical findings.
控制变异成本下多代理系统的分布式最优控制
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来源期刊
IEEE Transactions on Control of Network Systems
IEEE Transactions on Control of Network Systems Mathematics-Control and Optimization
CiteScore
7.80
自引率
7.10%
发文量
169
期刊介绍: The IEEE Transactions on Control of Network Systems is committed to the timely publication of high-impact papers at the intersection of control systems and network science. In particular, the journal addresses research on the analysis, design and implementation of networked control systems, as well as control over networks. Relevant work includes the full spectrum from basic research on control systems to the design of engineering solutions for automatic control of, and over, networks. The topics covered by this journal include: Coordinated control and estimation over networks, Control and computation over sensor networks, Control under communication constraints, Control and performance analysis issues that arise in the dynamics of networks used in application areas such as communications, computers, transportation, manufacturing, Web ranking and aggregation, social networks, biology, power systems, economics, Synchronization of activities across a controlled network, Stability analysis of controlled networks, Analysis of networks as hybrid dynamical systems.
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