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Dynamic modeling and boundary control of flexible axially moving system / Yu Liu [and four others].

Springer eBooks EBA - Intelligent Technologies and Robotics Collection 2023 Available online

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Format:
Book
Author/Creator:
Liu, Yu, author.
Language:
English
Subjects (All):
Differential equations, Partial.
Vibration--Mathematics.
Vibration.
Physical Description:
1 online resource (249 pages)
Edition:
1st ed. 2023.
Place of Publication:
Singapore : Springer, [2023]
Summary:
The main objectives of the book are to introduce the design method of boundary control strategies for the axially moving structures to reduce their vibration. This book provides the reader with a thorough grounding in the boundary controller design. Our goal is to provide advanced boundary controller design methods and their stability analysis methods and offer simulation examples and MATLAB programs for each boundary control algorithm. For each chapter, several engineering application examples are given and the contents of each chapter in this book are independent, so that readers can just read their own needs. In this book, all the control algorithms and their programs are described separately and classified by the chapter name, which can be run successfully in MATLAB. The book can benefit researchers, engineers, and graduate students in the fields of PDE modeling and boundary vibration control of flexible structures.
Contents:
Introduction
Mathematical Preliminaries
PDE Modeling for Flexible Manipulator
Boundary Control Using Singular Perturbation Approach
Robust boundary control of an axially moving system
Adaptive boundary control of an axially moving system with high acceleration/deceleration
Adaptive boundary control of an axially moving belt system with high acceleration/deceleration
Boundary control of an axially moving accelerated/decelerated
Stabilization of anaxially moving accelerated/decelerated system
Adaptive output feedback boundary control
Vibration control and boundary tension constraint of an axially moving string system
Boundary Control for an Axially Moving System With Input Restriction Based on Disturbance Observers
Adaptive Neural Network Vibration Control for an Output-Tension-Constrained Axially Moving Belt System With Input Nonlinearity
Conclusion.
Notes:
Description based on print version record.
Includes bibliographical references.
Other Format:
Print version: Liu, Yu Dynamic Modeling and Boundary Control of Flexible Axially Moving System
ISBN:
981-19-6941-8

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