Stability and Boundedness of Impulsive Systems with Time Delay

Stability and Boundedness of Impulsive Systems with Time Delay
Title Stability and Boundedness of Impulsive Systems with Time Delay PDF eBook
Author Qing Wang
Publisher
Pages 204
Release 2007
Genre
ISBN

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The stability and boundedness theories are developed for impulsive differential equations with time delay. Definitions, notations and fundamental theory are presented for delay differential systems with both fixed and state-dependent impulses. It is usually more difficult to investigate the qualitative properties of systems with state-dependent impulses since different solutions have different moments of impulses. In this thesis, the stability problems of nontrivial solutions of systems with state-dependent impulses are ``transferred" to those of the trivial solution of systems with fixed impulses by constructing the so-called ``reduced system". Therefore, it is enough to investigate the stability problems of systems with fixed impulses. The exponential stability problem is then discussed for the system with fixed impulses. A variety of stability criteria are obtained and`numerical examples are worked out to illustrate the results, which shows that impulses do contribute to the stabilization of some delay differential equations. To unify various stability concepts and to offer a general framework for the investigation of stability theory, the concept of stability in terms of two measures is introduced and then several stability criteria are developed for impulsive delay differential equations by both the single and multiple Lyapunov functions method. Furthermore, boundedness and periodicity results are discussed for impulsive differential systems with time delay. The Lyapunov-Razumikhin technique, the Lyapunov functional method, differential inequalities, the method of variation of parameters, and the partitioned matrix method are the main tools to obtain these results. Finally, the application of the stability theory to neural networks is presented. In applications, the impulses are considered as either means of impulsive control or perturbations. Sufficient conditions for stability and stabilization of neural networks are obtained.

Stability Analysis of Impulsive Functional Differential Equations

Stability Analysis of Impulsive Functional Differential Equations
Title Stability Analysis of Impulsive Functional Differential Equations PDF eBook
Author Ivanka Stamova
Publisher Walter de Gruyter
Pages 241
Release 2009-10-16
Genre Mathematics
ISBN 3110221829

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This book is devoted to impulsive functional differential equations which are a natural generalization of impulsive ordinary differential equations (without delay) and of functional differential equations (without impulses). At the present time the qualitative theory of such equations is under rapid development. After a presentation of the fundamental theory of existence, uniqueness and continuability of solutions, a systematic development of stability theory for that class of problems is given which makes the book unique. It addresses to a wide audience such as mathematicians, applied researches and practitioners.

Finite-Time Stability: An Input-Output Approach

Finite-Time Stability: An Input-Output Approach
Title Finite-Time Stability: An Input-Output Approach PDF eBook
Author Francesco Amato
Publisher John Wiley & Sons
Pages 184
Release 2018-10-08
Genre Technology & Engineering
ISBN 1119140528

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Systematically presents the input-output finite-time stability (IO-FTS) analysis of dynamical systems, covering issues of analysis, design and robustness The interest in finite-time control has continuously grown in the last fifteen years. This book systematically presents the input-output finite-time stability (IO-FTS) analysis of dynamical systems, with specific reference to linear time-varying systems and hybrid systems. It discusses analysis, design and robustness issues, and includes applications to real world engineering problems. While classical FTS has an important theoretical significance, IO-FTS is a more practical concept, which is more suitable for real engineering applications, the goal of the research on this topic in the coming years. Key features: Includes applications to real world engineering problems. Input-output finite-time stability (IO-FTS) is a practical concept, useful to study the behavior of a dynamical system within a finite interval of time. Computationally tractable conditions are provided that render the technique applicable to time-invariant as well as time varying and impulsive (i.e. switching) systems. The LMIs formulation allows mixing the IO-FTS approach with existing control techniques (e. g. H∞ control, optimal control, pole placement, etc.). This book is essential reading for university researchers as well as post-graduate engineers practicing in the field of robust process control in research centers and industries. Topics dealt with in the book could also be taught at the level of advanced control courses for graduate students in the department of electrical and computer engineering, mechanical engineering, aeronautics and astronautics, and applied mathematics.

Impulsive Systems with Delays

Impulsive Systems with Delays
Title Impulsive Systems with Delays PDF eBook
Author Xiaodi Li
Publisher Springer Nature
Pages 449
Release 2021-10-15
Genre Technology & Engineering
ISBN 9811646872

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This book systematically presents the most recent progress in stability and control of impulsive systems with delays. Impulsive systems have recently attracted continued high research interests because they provide a natural framework for mathematical modeling of many real-world processes. It focuses not only on impulsive delayed systems, but also impulsive systems with delayed impulses and impulsive systems with event-triggered mechanism, including their Lyapunov stability, finite-time stability and input-to-state stability synthesis. Special attention is paid to the bilateral effects of the delayed impulses, where comprehensive stability properties are discussed in the framework of time-dependent and state-dependent delays. New original work with event-triggered impulsive control and its applications in multi-agent systems and collective dynamics are also provided. This book will be of use to specialists who are interested in the theory of impulsive differential equations and impulsive control theory, as well as high technology specialists who work in the fields of complex networks and applied mathematics. Also, instructors teaching graduate courses and graduate students will find this book a valuable source of nonlinear system theory.

Boundedness and Stability Properties of Impulsive Systems

Boundedness and Stability Properties of Impulsive Systems
Title Boundedness and Stability Properties of Impulsive Systems PDF eBook
Author George Henri Ballinger
Publisher
Pages 234
Release 1995
Genre
ISBN

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Impulsive Differential Equations

Impulsive Differential Equations
Title Impulsive Differential Equations PDF eBook
Author Drumi Bainov
Publisher Routledge
Pages 238
Release 2017-11-01
Genre Mathematics
ISBN 1351439103

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Impulsive differential equations have been the subject of intense investigation in the last 10-20 years, due to the wide possibilities for their application in numerous fields of science and technology. This new work presents a systematic exposition of the results solving all of the more important problems in this field.

Advances in Time-Delay Systems

Advances in Time-Delay Systems
Title Advances in Time-Delay Systems PDF eBook
Author Silviu-Iulian Niculescu
Publisher Springer Science & Business Media
Pages 476
Release 2004-04-21
Genre Computers
ISBN 9783540208907

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The book focuses on delay systems and their applications. Well-known experts in the field were brought together to present a wide panorama of interdisciplinary methods in handling stability, control and related numerical issues. By reading the book, the readers will get an up-to-date picture of this active area of research as well as representative methods used in this field. This book can be used as a reference for both experts and novices interested in the research of time-delay, numerical issues, as well as applications of time-delay systems.