Fault-Tolerant Process Control: Methods and Applications
Autor Prashant Mhaskar, Jinfeng Liu, Panagiotis D. Christofidesen Limba Engleză Hardback – 22 noi 2012
· A framework for detection, isolation and diagnosis of actuator and sensor faults for nonlinear systems;
· Controller reconfiguration and safe-parking-based fault-handling methodologies;
· Integrated-data- and model-based fault-detection and isolation and fault-tolerant control methods;
· Methods for handling sensor faults and data losses; and
· Methods for monitoring the performance of low-level PID loops.
The methodologies proposed employ nonlinear systems analysis, Lyapunov techniques, optimization, statistical methods and hybrid systems theory and are predicated upon the idea of integrating fault-detection, local feedback control, and supervisory control. The applicability and performance of the methods are demonstrated through a number of chemical process examples. Fault-Tolerant Process Control is a valuable resource for academic researchers, industrial practitioners as well as graduate students pursuing research in this area.
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Specificații
ISBN-13: 9781447148074
ISBN-10: 144714807X
Pagini: 288
Ilustrații: XXIV, 264 p.
Dimensiuni: 155 x 235 x 21 mm
Greutate: 0.52 kg
Ediția:2013
Editura: SPRINGER LONDON
Colecția Springer
Locul publicării:London, United Kingdom
ISBN-10: 144714807X
Pagini: 288
Ilustrații: XXIV, 264 p.
Dimensiuni: 155 x 235 x 21 mm
Greutate: 0.52 kg
Ediția:2013
Editura: SPRINGER LONDON
Colecția Springer
Locul publicării:London, United Kingdom
Public țintă
ResearchCuprins
Background on Nonlinear Systems and Control.- Integrated Fault-Detection and Fault-Tolerant Control.- Integrated Fault-Detection and Isolation and Fault-Tolerant Control.- Safe-Parking.- Fault Diagnosis and Robust Safe-Parking.- Utilizing FDI Insights in Controller Design and PID Monitoring.- Isolation and Handling of Sensor Faults.- Control and Fault-Handling Subject to Asynchronous Measurements.
Recenzii
From the reviews:
“The book is dedicated to the development of active Fault-Tolerant Control (FTC) methods for processes of the chemical industry. … The book will be useful and interesting both for academic researchers and for industrial practitioners working in the given area.” (Boris Ivanovich Konosevich, zbMATH, Vol. 1270, 2013)
“The book is dedicated to the development of active Fault-Tolerant Control (FTC) methods for processes of the chemical industry. … The book will be useful and interesting both for academic researchers and for industrial practitioners working in the given area.” (Boris Ivanovich Konosevich, zbMATH, Vol. 1270, 2013)
Textul de pe ultima copertă
Fault-Tolerant Process Control focuses on the development of general, yet practical, methods for the design of advanced fault-tolerant control systems; these ensure an efficient fault detection and a timely response to enhance fault recovery, prevent faults from propagating or developing into total failures, and reduce the risk of safety hazards. To this end, methods are presented for the design of advanced fault-tolerant control systems for chemical processes which explicitly deal with actuator/controller failures and sensor faults and data losses. Specifically, the book puts forward:
· a framework for detection, isolation and diagnosis of actuator and sensor faults for nonlinear systems;
· controller reconfiguration and safe-parking-based fault-handling methodologies;
· integrated-data- and model-based fault-detection and isolation and fault-tolerant control methods;
· methods for handling sensor faults and data losses; and
· methods for monitoring the performance of low-level PIDloops.
The methodologies proposed employ nonlinear systems analysis, Lyapunov techniques, optimization, statistical methods and hybrid systems theory and are predicated upon the idea of integrating fault-detection, local feedback control, and supervisory control. The applicability and performance of the methods are demonstrated through a number of chemical process examples.
Fault-Tolerant Process Control is a valuable resource for academic researchers, industrial practitioners as well as graduate students pursuing research in this area.
· a framework for detection, isolation and diagnosis of actuator and sensor faults for nonlinear systems;
· controller reconfiguration and safe-parking-based fault-handling methodologies;
· integrated-data- and model-based fault-detection and isolation and fault-tolerant control methods;
· methods for handling sensor faults and data losses; and
· methods for monitoring the performance of low-level PIDloops.
The methodologies proposed employ nonlinear systems analysis, Lyapunov techniques, optimization, statistical methods and hybrid systems theory and are predicated upon the idea of integrating fault-detection, local feedback control, and supervisory control. The applicability and performance of the methods are demonstrated through a number of chemical process examples.
Fault-Tolerant Process Control is a valuable resource for academic researchers, industrial practitioners as well as graduate students pursuing research in this area.
Caracteristici
Numerous comments and remarks provide fundamental understanding of fault detection and isolation and fault-tolerant control system design problems Many detailed examples of industrial relevance are easily tailored by practitioners to their specific applications Gives the reader a rich collection of state-of-the art, rigorous yet practical methods, new research topics, and references to significant recent work on the design of integrated fault detection and isolation and fault-tolerant control systems for chemical processes Includes supplementary material: sn.pub/extras