Hybrid Cooperative Output Regulation of Linear Multiagent Systems

IF 4 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Ying Zhang;Youfeng Su;He Cai
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引用次数: 0

Abstract

In this article, the hybrid cooperative output regulation problem for linear multiagent systems is formulated and investigated, where both the exosystem and the agent dynamics are hybrid linear systems with periodic jumps. To solve this problem, a distributed observer approach is proposed, which consists of two steps. First, a novel output-based hybrid distributed observer is designed which can achieve distributed information estimation for various practical hybrid exosystems. Second, by incorporating a decentralized hybrid output feedback control law with the proposed hybrid distributed observer, a hybrid distributed output feedback control law is synthesized to solve the hybrid cooperative output regulation problem. In comparison with the existing works targeting purely continuous-time multiagent systems, the simplified forms for both the hybrid distributed observer and the hybrid output feedback control law proposed in this article exhibit prominent advantages from various aspects, such as robustness against intermittent communication links and the sampled measurement of system output for feedback. The effectiveness of the theoretical results is validated by solving the output synchronization problem for a hybrid electrical system made up of multiple heterogeneous RC circuits, where the capacitors are switched on and off periodically.
本文提出并研究了线性多代理系统的混合合作输出调节问题,其中外系统和代理动态都是具有周期性跳跃的混合线性系统。为了解决这个问题,本文提出了一种分布式观测器方法,包括两个步骤。首先,设计了一种新颖的基于输出的混合分布式观测器,它可以实现各种实际混合外系统的分布式信息估计。其次,通过将分散式混合输出反馈控制法则与所提出的混合分布式观测器相结合,合成混合分布式输出反馈控制法则,以解决混合协同输出调节问题。与现有针对纯连续时间多代理系统的研究相比,本文提出的混合分布式观测器和混合输出反馈控制律的简化形式在各方面都表现出突出的优势,如对间歇性通信链路的鲁棒性和对系统输出的反馈采样测量。通过求解由多个异质 RC 电路组成的混合电力系统的输出同步问题,验证了理论结果的有效性。
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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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