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Analysis and Design for Networked Teleoperation System / by Changchun Hua, Yana Yang, Xian Yang, Xinping Guan.

By: Hua, Changchun., autor
Contributor(s): Yang, Yana., autor | Yang, Xian., autor | Guan, Xinping., autor | SpringerLink (Online service)
Series: (Intelligent Technologies and Robotics (Springer-42732)).Publisher: Singapore : Springer Singapore : Imprint: Springer, 2019Description: 1 recurso en línea (XIV, 247 páginas) : 151 ilustraciones,147 ilustraciones a color.ISBN: 9789811379369.Subject: Análisis de sistemasOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction -- Convergence Analysis of Teleoperation Systems With Unsymmetrical Time-Varying Delays -- Stability Analysis of Teleoperation Systems With Asymmetric Time-Varying Delays -- Stability Analysis of Teleoperation Systems withAsymmetric Interval Time-Varying Delays -- Stability Analysis of Teleoperation Systems with Quantization -- Directed Force Feedback Control Design with Asymmetric and Time-varying Delays -- Teleoperation over the Internet with exponential convergence -- Finite Time Controller Design -- Constrained Control Design for Bilateral Teleoperation System -- Output Feedback Controller Design for Teleoperation System via High-gain Observer -- Finite Time Observer Design for Teleoperation System -- On Exploring the Domain of Attraction for Bilateral Teleoperator -- Adaptive Controller Design for Teleoperation System With Actuator Saturation. .
Abstract: This book presents cutting-edge results on stability analysis and control scheme designs for networked teleoperation systems. It highlights new research on commonly encountered nonlinear teleoperation systems, including the stability analysis of teleoperation systems with asymmetric time-varying delays, stability analysis of teleoperation systems with interval time delays, and so on. Moreover, the book presents several high-performance control scheme designs for teleoperation systems when the velocity is available and unavailable, and for systems with nonlinear input. The results presented here mark a substantial contribution to nonlinear teleoperation system theory, robotic control theory and networked control system theory. As such, the book will be of interest to university researchers, R&D engineers and graduate students in control theory and control engineering who wish to learn about the core principles, methods, algorithms, and applications of networked teleoperation systems, robotic systems and nonlinear control systems.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería QA402 2019 EB (Browse shelf(Opens below)) Acceso electrónico eBooks26062098
Total holds: 0

Introduction -- Convergence Analysis of Teleoperation Systems With Unsymmetrical Time-Varying Delays -- Stability Analysis of Teleoperation Systems With Asymmetric Time-Varying Delays -- Stability Analysis of Teleoperation Systems withAsymmetric Interval Time-Varying Delays -- Stability Analysis of Teleoperation Systems with Quantization -- Directed Force Feedback Control Design with Asymmetric and Time-varying Delays -- Teleoperation over the Internet with exponential convergence -- Finite Time Controller Design -- Constrained Control Design for Bilateral Teleoperation System -- Output Feedback Controller Design for Teleoperation System via High-gain Observer -- Finite Time Observer Design for Teleoperation System -- On Exploring the Domain of Attraction for Bilateral Teleoperator -- Adaptive Controller Design for Teleoperation System With Actuator Saturation. .

This book presents cutting-edge results on stability analysis and control scheme designs for networked teleoperation systems. It highlights new research on commonly encountered nonlinear teleoperation systems, including the stability analysis of teleoperation systems with asymmetric time-varying delays, stability analysis of teleoperation systems with interval time delays, and so on. Moreover, the book presents several high-performance control scheme designs for teleoperation systems when the velocity is available and unavailable, and for systems with nonlinear input. The results presented here mark a substantial contribution to nonlinear teleoperation system theory, robotic control theory and networked control system theory. As such, the book will be of interest to university researchers, R&D engineers and graduate students in control theory and control engineering who wish to learn about the core principles, methods, algorithms, and applications of networked teleoperation systems, robotic systems and nonlinear control systems.

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