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Fixed-Time Cooperative Control of Multi-Agent Systems (Hardcover, 1st ed. 2019): Zongyu Zuo, Qinglong Han, Boda Ning Fixed-Time Cooperative Control of Multi-Agent Systems (Hardcover, 1st ed. 2019)
Zongyu Zuo, Qinglong Han, Boda Ning
R3,268 Discovery Miles 32 680 Ships in 10 - 15 working days

This monograph presents new theories and methods for fixed-time cooperative control of multi-agent systems. Fundamental concepts of fixed-time stability and stabilization are introduced with insightful understanding. This book presents solutions for several problems of fixed-time cooperative control using systematic design methods. The book compares fixed-time cooperative control with asymptotic cooperative control, demonstrating how the former can achieve better closed-loop performance and disturbance rejection properties. It also discusses the differences from finite-time control, and shows how fixed-time cooperative control can produce the faster rate of convergence and provide an explicit estimate of the settling time independent of initial conditions. This monograph presents multiple applications of fixed-time control schemes, including to distributed optimization of multi-agent systems, making it useful to students, researchers and engineers alike.

Robust Cooperative Control of Multi-Agent Systems - A Prediction and Observation Prospective (Hardcover): Chunyan Wang, Zongyu... Robust Cooperative Control of Multi-Agent Systems - A Prediction and Observation Prospective (Hardcover)
Chunyan Wang, Zongyu Zuo, Jianan Wang, Zhengtao Ding
R3,476 Discovery Miles 34 760 Ships in 12 - 17 working days

This book presents a concise introduction to the latest advances in robust cooperative control design for multi-agent systems with input delay and external disturbances, especially from a prediction and observation perspective. The volume covers a wide range of applications, such as the trajectory tracking of quadrotors, formation flying of multiple unmanned aerial vehicles (UAVs) and fixed-time formation of ground vehicles. Robust cooperative control means that multi-agent systems are able to achieve specified control tasks while remaining robust in the face of both parametric and nonparametric model uncertainties. In addition, the authors cover a wide range of key issues in cooperative control, such as communication and input delays, parametric model uncertainties and external disturbances. Moving beyond the scope of existing works, a systematic prediction and observation approach to designing robust cooperative control laws is presented. About the Authors Chunyan Wang is an Associate Professor in the School of Aerospace Engineering at Beijing Institute of Technology, China. Zongyu Zuo is a full Professor with the School of Automation Science and Electrical Engineering, Beihang University, China. Jianan Wang is an Associate Professor in the School of Aerospace Engineering at Beijing Institute of Technology, China. Zhengtao Ding is a Professor in the Department of Electrical and Electronic Engineering at University of Manchester, U.K.

Fixed-Time Cooperative Control of Multi-Agent Systems (Paperback, 1st ed. 2019): Zongyu Zuo, Qinglong Han, Boda Ning Fixed-Time Cooperative Control of Multi-Agent Systems (Paperback, 1st ed. 2019)
Zongyu Zuo, Qinglong Han, Boda Ning
R3,268 Discovery Miles 32 680 Ships in 10 - 15 working days

This monograph presents new theories and methods for fixed-time cooperative control of multi-agent systems. Fundamental concepts of fixed-time stability and stabilization are introduced with insightful understanding. This book presents solutions for several problems of fixed-time cooperative control using systematic design methods. The book compares fixed-time cooperative control with asymptotic cooperative control, demonstrating how the former can achieve better closed-loop performance and disturbance rejection properties. It also discusses the differences from finite-time control, and shows how fixed-time cooperative control can produce the faster rate of convergence and provide an explicit estimate of the settling time independent of initial conditions. This monograph presents multiple applications of fixed-time control schemes, including to distributed optimization of multi-agent systems, making it useful to students, researchers and engineers alike.

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