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Communication-Protocol-Based Filtering and Control of Networked Systems

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

04.05.2022

Verlag

Springer

Seitenzahl

212

Maße (L/B/H)

24,1/16/1,8 cm

Gewicht

512 g

Auflage

1st ed. 2022

Sprache

Englisch

ISBN

978-3-030-97511-1

Beschreibung

Rezension

“The monograph is largely based on research publications of the authors and their colleagues. The techniques are mainly linear algebraic. Illustrative numerical experiments supporting the theory are included everywhere.” (Vivek S. Borkar, zbMATH 1501.93003, 2023)

“This book is a research monograph focusing on discrete-time communication protocol based filtering and control. It covers control of networked systems with filter design approaches as well as controller design approaches and is suitable for students and researchers having basic knowledge in linear algebra, probability and calculus. … The book is self-contained with references at the end of each chapter and an index at the end of the book. It is easy to follow with illustrations and examples.” (Yilun Shang, Mathematical Reviews, November, 2022)

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

04.05.2022

Verlag

Springer

Seitenzahl

212

Maße (L/B/H)

24,1/16/1,8 cm

Gewicht

512 g

Auflage

1st ed. 2022

Sprache

Englisch

ISBN

978-3-030-97511-1

Herstelleradresse

Springer-Verlag KG
Sachsenplatz 4-6
1201 Wien
AT

Email: GPSR Kontakt

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  • Produktbild: Communication-Protocol-Based Filtering and Control of Networked Systems
  • Produktbild: Communication-Protocol-Based Filtering and Control of Networked Systems
  • Introduction.- Ultimately Bounded Filtering for Complex Networks Under Round-Robin Protocol.- Finite-horizon H-infinity Filtering with Random Access protocol and High-Rate Communication.- Finite-horizon H-infinity fault estimation of time-varying systems with Random Access Protocol.- Set-Membership Filtering under Round-Robin Protocol and Try-Once-Discard Protocol.- Recursive Filtering for Time-Varying Systems with Random Access Protocol.- Filtering of Communication-Based Train Control Systems with CSMA Protocol.- Observer-based H-infinity Control of Time-Varying Systems with Random Access Protocol.- Ultimately Bounded Control of Nonlinear Systems with Try-Once-Discard Protocol.- Finite-Horizon Consensus Control of Multi-Agent Systems with Random Access Protocol.- Conclusions and Future Work.