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2025 | Buch

Finite-Time Control of Networked Systems

verfasst von: Xinsong Yang, Yaping Sun, Rongqiang Tang, Meijie Zhang

Verlag: Springer Nature Singapore

Buchreihe : Intelligent Control and Learning Systems

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SUCHEN

Über dieses Buch

Dieses Buch bietet hauptsächlich aktuelle Fortschritte in Fragen der endlichen und festen Zeitsteuerung für komplexe Netzwerke und neuronale Netzwerke. Es ist bekannt, dass endzeitliche Techniken mehr Vorteile gegenüber asymptotischen haben. Neben schnellen Konvergenzraten haben endliche Zeittechniken bessere Eigenschaften für Robustheit und Störabstoßung. Allerdings ist es schwierig, sich mit der Zeitverzögerung bei der Erforschung der endlichen Zeitsteuerung auseinanderzusetzen. Zum besseren Verständnis des Lesers wird das Thema der Endzeitsteuerung für Systeme mit und ohne Zeitverzögerung in diesem Buch separat vorgestellt. Darüber hinaus werden auch die Fragen der endlichen und festen Zeitsteuerung für Differentialgleichungen mit diskontinuierlichen Zuständen auf der rechten Seite berücksichtigt. Viele interessante Ergebnisse zur Synchronisation von endlicher Zeit und fester Zeit werden in Form von Lemmata, Theoremen oder Folgerungen vorgelegt, begleitet von systematischen theoretischen Analysen zum Nachweis ihrer ausreichenden Bedingungen, des Controller-Designs und neuer Analysetechniken. Jedes neue Ergebnis wird durch mindestens ein numerisches Beispiel mit detaillierter Datenanalyse verifiziert. Daher ist dieses Buch ein vorteilhaftes Werkzeug und nützlich für interessierte Experten und Wissenschaftler im Kontrollbereich.

Inhaltsverzeichnis

Frontmatter
Chapter 1. Introduction
Abstract
The rapid development of communication and computing technologies has promoted increased academic interest and wide application of networked systems in engineering. Complex networks (CNs) are a fascinating type of networked system consisting of multiple low-dimensional subsystems that can perform complex tasks at economical costs.
Xinsong Yang, Yaping Sun, Rongqiang Tang, Meijie Zhang
Chapter 2. Preliminaries
Abstract
Consider the following ordinary differential equation
Xinsong Yang, Yaping Sun, Rongqiang Tang, Meijie Zhang
Chapter 3. Finite-Time Control of Continuous Systems Without Delay
Abstract
The finite-time synchronization of continuous systems without delay is studied in this chapter. It is well known that finite-time techniques have more advantages over asymptotical ones. Besides fast convergence rate, finite-time techniques have better robustness and disturbance rejection properties. Therefore, stabilization and synchronization of various systems in finite time have been extensively studied.
Xinsong Yang, Yaping Sun, Rongqiang Tang, Meijie Zhang
Chapter 4. Finite-Time Control of Continuous Systems with Delay

This chapter introduces the finite-time synchronization of time-delayed systems, which is different from the synchronization of systems without delay. Due to the time delays, the traditional finite-time stability theorem cannot be applied to the synchronization goal. With the help of the sign function method, finite-time synchronization is discussed in different environments with specific constraints. Sufficient conditions guaranteeing finite-time synchronization are strictly derived in each subsection.

Xinsong Yang, Yaping Sun, Rongqiang Tang, Meijie Zhang
Chapter 5. Fixed-Time Control of Continuous Systems
Abstract
We introduce a special finite-time approach called fixed-time control. The advantage of fixed-time techniques over classical finite-time ones is that their settling time is not dependent on the initial values. By designing different controllers and proposing different analysis methods, the corresponding analysis results are obtained. For a more comprehensive introduction to fixed-time, we also consider perturbations, impulse effects, signed graphs, T-S fuzzy systems, and so on. In each section, corresponding numerical simulations are demonstrated to verify the proposed approach in theory.
Xinsong Yang, Yaping Sun, Rongqiang Tang, Meijie Zhang
Chapter 6. Finite-Time and Fixed-Time Control of Differential Equations with Discontinuous State

In this chapter, we mainly study the finite-time and fixed-time control problems of differential equations with discontinuous state on the right-hand side. Under the framework of Filippov solution, we derive some general sufficient conditions to guarantee the global existence of the solutions to systems with discontinuous activation functions and various delays. By designing different controllers and applying some new analysis techniques, some novel Lyapunov Krasovskii functionals are constructed, and sufficient conditions to ensure finite-time or fixed-time synchronization are obtained.

Xinsong Yang, Yaping Sun, Rongqiang Tang, Meijie Zhang
Metadaten
Titel
Finite-Time Control of Networked Systems
verfasst von
Xinsong Yang
Yaping Sun
Rongqiang Tang
Meijie Zhang
Copyright-Jahr
2025
Verlag
Springer Nature Singapore
Electronic ISBN
978-981-9603-28-2
Print ISBN
978-981-9603-27-5
DOI
https://doi.org/10.1007/978-981-96-0328-2