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E-Book, Englisch, 127 Seiten
Pinto / Hsu / Oliveira Sliding-Mode Control and Estimation for Time-Delay Systems
Erscheinungsjahr 2026
ISBN: 978-3-032-30178-9
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark
Fault Reconstruction, Disturbance Rejection, and Stabilization
E-Book, Englisch, 127 Seiten
Reihe: SpringerBriefs in Control, Automation and Robotics
ISBN: 978-3-032-30178-9
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark
This brief focuses on the challenges and solutions related to (specifically) output delays in sliding-mode-controlled systems; in some cases input delays could be incorporated by analogy. It treats the complexity introduced in sliding-mode control by delay and addresses potential issues connected with reduced robustness. It emphasizes delay types of practical importance in such different contexts as: fault reconstruction, disturbance rejection and stabilization.
The authors provide a snapshot of current understanding while laying foundations that will remain relevant as the field advances. The text balances rigor and accessibility, breadth and depth, and theoretical development and practical application. It provides the reader with specialized tools to tackle the challenges posed by the growth in input and output delays following on inevitably from the increasing prevalence of networked and distributed systems.
is primarily intended for graduate students, researchers and practicing engineers working on robust and nonlinear control of time-delay systems. Students will find it to be a structured entry point into an important subfield of robust control. Researchers will gain a comprehensive reference on the state of the art and key open problems. Practitioners will find actionable design methodologies and implementation guidelines tailored to real-world challenges.
Zielgruppe
Research
Autoren/Hrsg.
Weitere Infos & Material
Fault Reconstruction of Time-Delay and Sampled-Output Systems—a Time Shift Approach.- Fault Reconstruction for Delay Systems via Least Squares and Time-Shifted SMOs.- Disturbance Rejection and Estimation with PDE-Backstepping Predictor.- Disturbance Rejection with PDE-Backstepping Predictor and Super-Twisting Observer.- Global Stabilization via Cascade High-Gain Observers for State and Output Delays.




