A unified approach to output synchronization of heterogeneous multi-agent systems via L2-gain design
From MaRDI portal
Publication:4574765
DOI10.1007/s11768-017-7067-0zbMath1399.93088OpenAlexW2767343164MaRDI QIDQ4574765
Frank L. Lewis, Shan Zuo, Ali Davoudi, Hamidreza Modares, Yong-Duan Song
Publication date: 18 July 2018
Published in: Control Theory and Technology (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11768-017-7067-0
Feedback control (93B52) Design techniques (robust design, computer-aided design, etc.) (93B51) Decentralized systems (93A14) Agent technology and artificial intelligence (68T42)
Related Items (1)
Cites Work
- Unnamed Item
- Unnamed Item
- Output regulation of linear heterogeneous multi-agent systems via output and state feedback
- Distributed \(\mathcal{L}_2\)-gain output-feedback control of homogeneous and heterogeneous systems
- Output synchronization for heterogeneous networks of non-introspective agents
- Cooperative control of multi-agent systems. Optimal and adaptive design approaches
- Synchronization in networks of minimum-phase, non-introspective agents without exchange of controller states: homogeneous, heterogeneous, and nonlinear
- An internal model principle is necessary and sufficient for linear output synchronization
- Coordinated output regulation of heterogeneous linear systems under switching topologies
- Robust cooperative control for multi-agent systems via distributed output regulation
- Distributed observers design for leader-following control of multi-agent networks
- Synchronizing linear systems via partial-state coupling
- Parameterization of all stabilizing \(H_{\infty }\) static state-feedback gains: application to output-feedback design
- Cooperative Output Regulation of Heterogeneous Multi-Agent Systems: An $H_{\infty}$ Criterion
- Disturbance attenuation and<tex>H^{∞}</tex>optimization: A design method based on the algebraic Riccati equation
- Lyapunov and Riccati equations: Periodic inertia theorems
- Information Flow and Cooperative Control of Vehicle Formations
- Consensus Problems in Networks of Agents With Switching Topology and Time-Delays
- Distributed multi‐vehicle coordinated control via local information exchange
- A Distributed Control Approach to A Robust Output Regulation Problem for Multi-Agent Linear Systems
- Stability of a Class of Linear Switching Systems with Applications to Two Consensus Problems
- A General Result on the Robust Cooperative Output Regulation for Linear Uncertain Multi-Agent Systems
- Semi‐global regulation of output synchronization for heterogeneous networks of non‐introspective, invertible agents subject to actuator saturation
- Nonlinear Output Regulation
- Cooperative Control of Dynamical Systems
This page was built for publication: A unified approach to output synchronization of heterogeneous multi-agent systems via L2-gain design