Produktbild: Fault Diagnosis and Fault-Tolerant Control of Nonlinear Systems with Higher System Input Powers
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Fault Diagnosis and Fault-Tolerant Control of Nonlinear Systems with Higher System Input Powers

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

20.03.2025

Verlag

Springer Singapore

Seitenzahl

192

Maße (L/B/H)

24,1/16/1,7 cm

Gewicht

426 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-981-9617-72-2

Beschreibung

Rezension

“The book is 192 pages long and contains more than 300 references. Each chapter is preceded by an abstract and begins with an introduction, for the reader’s convenience, and contains one or several simulation results. It is intended to graduate (and less likely undergraduate) students, as well as researchers interested in nonlinear system control.” (Henri Bourlès, zbMATH 1569.93003, 2026)


“The development of the results is well organized in seven chapters, each featuring numerical simulation results to corroborate the theoretical findings. Directions for further research endeavors are provided. This book is embroidered with mathematical nitty-gritties of graduate-level studies … . The present book is a must on the desk of any active researcher in the field.” (Yazdan Bavafa-Toosi, Mathematical Reviews, December, 2025)

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

20.03.2025

Verlag

Springer Singapore

Seitenzahl

192

Maße (L/B/H)

24,1/16/1,7 cm

Gewicht

426 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-981-9617-72-2

Herstelleradresse

Springer-Verlag GmbH
Tiergartenstr. 17
69121 Heidelberg
DE

Email: GPSR Kontakt

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  • Produktbild: Fault Diagnosis and Fault-Tolerant Control of Nonlinear Systems with Higher System Input Powers
  • Introduction.- Adaptive Observer Based Tracking Control and Fault Detection with Known Higher Input Powers.- Fuzzy Adaptive Fault Tolerant Backstepping Supervisory Control for Uncertain Systems with Known Higher Input Powers.- Stability Control Fault Detection and Estimation with Unknown System Input Power.- Adaptive Fault Tolerant Output Tracking Backstepping Control with Unknown Higher Input Powers.- Robust Fault-Tolerant Adaptive Tracking Control with Unknown System Input Powers and Dynamic Disturbances.- Adaptive Neural Distributed Fault Tolerant Consensus with Unmodeled Dynamics and Unknown Higher Input Power.- Distributed Fuzzy FTC for 2D Nonlinear Mass with Unknown Input Powers.- Conclusion and Future Research Directions.