Consensus of multiagent systems with directed topology and communication time delay bases on the Laplace transform
From MaRDI portal
Publication:1718404
DOI10.1155/2014/437819zbMath1407.93024OpenAlexW2120493029WikidataQ59067246 ScholiaQ59067246MaRDI QIDQ1718404
Dehui Sun, Bo Liu, Xinmao Zhu, Li Wang
Publication date: 8 February 2019
Published in: Mathematical Problems in Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1155/2014/437819
Cites Work
- Adaptive second-order consensus of networked mobile agents with nonlinear dynamics
- Rendezvous of multiple mobile agents with preserved network connectivity
- Adaptive flocking with a virtual leader of multiple agents governed by locally Lipschitz nonlinearity
- Semi-Global Leader-Following Consensus of Linear Multi-Agent Systems With Input Saturation via Low Gain Feedback
- Flocking of Multi-Agents With a Virtual Leader
- Coordination of groups of mobile autonomous agents using nearest neighbor rules
- Consensus Problems in Networks of Agents With Switching Topology and Time-Delays
- Necessary and sufficient graphical conditions for formation control of unicycles
- Consensus seeking in multiagent systems under dynamically changing interaction topologies
- A connectivity-preserving flocking algorithm for multi-agent systems based only on position measurements
This page was built for publication: Consensus of multiagent systems with directed topology and communication time delay bases on the Laplace transform