Emergent Behavior Detection and Task Coordination for Multiagent Systems A Distributed Estimation and Control Approach

This book addresses problems in the modeling, detection, and control of emergent behaviors and task coordination in multiagent systems. It presents a unified solution to such problems in terms of distributed estimation, distributed control, and optimization of interaction topologies and dynamics. Fo...

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Bibliographic Details
Main Author: Wang, Jing
Format: eBook
Language:English
Published: Cham Springer International Publishing 2022, 2022
Edition:1st ed. 2022
Series:Studies in Systems, Decision and Control
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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245 0 0 |a Emergent Behavior Detection and Task Coordination for Multiagent Systems  |h Elektronische Ressource  |b A Distributed Estimation and Control Approach  |c by Jing Wang 
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300 |a XX, 235 p. 112 illus., 110 illus. in color  |b online resource 
505 0 |a Introduction -- Preliminaries on System Theory and Optimization Algorithms -- Interaction Topology of Multiagent Systems and Consensus Protocols -- Emergent Behavior Detection in Multiagent Systems -- Distributed Task Coordination of Multiagent Systems -- Multiagent Task Coordination Using Approximate Dynamic Programming -- Distributed Gradient Estimation for Multiagent Task Optimization -- Case Studies and Experiments 
653 |a Control, Robotics, Automation 
653 |a Control and Systems Theory 
653 |a Control engineering 
653 |a Robotics 
653 |a Automation 
653 |a Multiagent Systems 
653 |a Multiagent systems 
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490 0 |a Studies in Systems, Decision and Control 
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520 |a This book addresses problems in the modeling, detection, and control of emergent behaviors and task coordination in multiagent systems. It presents a unified solution to such problems in terms of distributed estimation, distributed control, and optimization of interaction topologies and dynamics. Four aspects of the technical solutions in the book are presented: First, the impact of interaction dynamics on the convergence conditions related to interaction topologies is discussed, utilizing a discontinuous cooperative control algorithm of updated design. Second, distributed least-squares and Kalman filtering algorithms for agents with limited interactions are elaborated upon. Third, a general framework of distributed nonlinear control is established, and distributed adaptive control for nonlinear systems with more general uncertainties is presented. Based on the proposed framework, a distributed nonlinear controller is designed to deal with task coordination of robotic systems with nonholonomic constraints. Finally, the problem of optimal multiagent task coordination is addressed and solutions based on approximate dynamic programming and approximate distributed gradient estimation are presented. Emergent Behavior Detection and Task Coordination for Multiagent Systems is of interest to practicing engineers in areas such as robotics and cyber-physical systems, researchers in the field of systems, controls, and robotics, and senior undergraduate and graduate students