Iterative learning control for equations with fractional derivatives and impulses / JinRong Wang, Shengda Liu, Michal Fečkan.
2022
QA402.3 .W36 2022
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Title
Iterative learning control for equations with fractional derivatives and impulses / JinRong Wang, Shengda Liu, Michal Fečkan.
ISBN
9789811682445 (electronic bk.)
9811682445 (electronic bk.)
9789811682438
9811682437
9811682445 (electronic bk.)
9789811682438
9811682437
Published
Singapore : Springer, [2022]
Copyright
©2022
Language
English
Description
1 online resource (263 pages) : illustrations (chiefly color)
Item Number
10.1007/978-981-16-8244-5 doi
Call Number
QA402.3 .W36 2022
Dewey Decimal Classification
515/.642
Summary
This book introduces iterative learning control (ILC) and its applications to the new equations such as fractional order equations, impulsive equations, delay equations, and multi-agent systems, which have not been presented in other books on conventional fields. ILC is an important branch of intelligent control, which is applicable to robotics, process control, and biological systems. The fractional version of ILC updating laws and formation control are presented in this book. ILC design for impulsive equations and inclusions are also established. The broad variety of achieved results with rigorous proofs and many numerical examples make this book unique. This book is useful for graduate students studying ILC involving fractional derivatives and impulsive conditions as well as for researchers working in pure and applied mathematics, physics, mechanics, engineering, biology, and related disciplines.
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Includes bibliographical references.
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Description based on print version record.
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Series
Studies in systems, decision and control ; v. 403.
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Table of Contents
Fractional Equations
Fractional Multi-Agent Systems
Instantaneous Impulsive Equations
Noninstantaneous Impulsive Equations
Noninstantaneous Impulsive Inclusions
Delay Equations.
Fractional Multi-Agent Systems
Instantaneous Impulsive Equations
Noninstantaneous Impulsive Equations
Noninstantaneous Impulsive Inclusions
Delay Equations.