Bibliografische Daten
ISBN/EAN: 9783540228615
Sprache: Englisch
Umfang: xii, 291 S., 105 s/w Illustr., 291 p. 105 illus.
Einband: kartoniertes Buch
Beschreibung
InhaltsangabeThe Geometry of Sensor Information Utilization in Nonlinear Feedback Control of Vehicle Formations.- Determining Environmental Boundaries: Asynchronous Communication and Physical Scales.- Adaptive and Distributed Coordination Algorithms for Mobile Sensing Networks.- Optimization-Based Control of Multi-Vehicle Systems.- Modeling and Analysis of Cooperative Control Systems for Uninhabited Autonomous Vehicles.- Extracting Interactive Control Algorithms from Group Dynamics of Schooling Fish.- Cooperative Control of Large Systems.- Pursuit Strategies for Autonomous Agents.- Decentralized Coordination with Local Interactions: Some New Directions.- Coordination Variables and Consensus Building in Multiple Vehicle Systems.- Collective Motion and Oscillator Synchronization.- A Study of Synchronization and Group Cooperation Using Partial Contraction Theory.- Flocking in Teams of Nonholonomic Agents.- Cooperative Control for Localization of Mobile Sensor Networks.- The Multi-Agent Rendezvous Problem.
Produktsicherheitsverordnung
Hersteller:
Springer Verlag GmbH
juergen.hartmann@springer.com
Tiergartenstr. 17
DE 69121 Heidelberg
Inhalt
The Geometry of Sensor Information Utilization in Nonlinear Feedback Control of Vehicle Formations.- Determining Environmental Boundaries: Asynchronous Communication and Physical Scales.- Adaptive and Distributed Coordination Algorithms for Mobile Sensing Networks.- Optimization-Based Control of Multi-Vehicle Systems.- Modeling and Analysis of Cooperative Control Systems for Uninhabited Autonomous Vehicles.- Extracting Interactive Control Algorithms from Group Dynamics of Schooling Fish.- Cooperative Control of Large Systems.- Pursuit Strategies for Autonomous Agents.- Decentralized Coordination with Local Interactions: Some New Directions.- Coordination Variables and Consensus Building in Multiple Vehicle Systems.- Collective Motion and Oscillator Synchronization.- A Study of Synchronization and Group Cooperation Using Partial Contraction Theory.- Flocking in Teams of Nonholonomic Agents.- Cooperative Control for Localization of Mobile Sensor Networks.- The Multi-Agent Rendezvous Problem.