This book presents recent advances in fault diagnosis and fault-tolerant control of dynamic processes. Its impetus derives from the need for an overview of the challenges of the fault diagnosis technique and sustainable control, especially for those demanding systems that require reliability, availa
Fault Diagnosis and Fault-Tolerant Control and Guidance for Aerospace Vehicles: From Theory to Application
β Scribed by Ali Zolghadri, David Henry, JΓ©rΓ΄me CieΕlak, Denis Efimov, Philippe Goupil (auth.)
- Publisher
- Springer-Verlag London
- Year
- 2014
- Tongue
- English
- Leaves
- 227
- Series
- Advances in Industrial Control
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Fault Diagnosis and Fault-Tolerant Control and Guidance for Aerospace demonstrates the attractive potential of recent developments in control for resolving such issues as flight performance, self protection and extended-life structures. Importantly, the text deals with a number of practically significant considerations: tuning, complexity of design, real-time capability, evaluation of worst-case performance, robustness in harsh environments, and extensibility when development or adaptation is required. Coverage of such issues helps to draw the advanced concepts arising from academic research back towards the technological concerns of industry.
Initial coverage of basic definitions and ideas and a literature review gives way to a treatment of electrical flight control system failures: oscillatory failure, runaway, and jamming. Advanced fault detection and diagnosis for linear and linear-parameter-varying systems are described. Lastly recovery strategies appropriate to remaining actuator/sensor/communications resources are developed.
The authors exploit experience gained in research collaboration with academic and major industrial partners to validate advanced fault diagnosis and fault-tolerant control techniques with realistic benchmarks or real-world aeronautical and space systems. Consequently, the results presented in Fault Diagnosis and Fault-Tolerant Control and Guidance for Aerospace, will be of interest in both academic and aerospatial-industrial milieux.
β¦ Table of Contents
Front Matter....Pages i-xvi
Introduction....Pages 1-4
Review and Basic Concepts....Pages 5-27
Robust Detection of Oscillatory Failure Case in Aircraft Control Surface Servo-Loops....Pages 29-71
Robust Detection of Abnormal Aircraft Control Surface Position for Early System Reconfiguration....Pages 73-89
Failure Detection and Compensation for Aircraft Inertial System....Pages 91-117
An Active Fault-Tolerant Flight Control Strategy....Pages 119-149
Model-Based FDIR for Space Applications....Pages 151-207
Conclusions and Outlook....Pages 209-212
Back Matter....Pages 213-216
β¦ Subjects
Control; Aerospace Technology and Astronautics
π SIMILAR VOLUMES
<p>The major objective of this book is to introduce advanced design and (online) optimization methods for fault diagnosis and fault-tolerant control from different aspects. Under the aspect of system types, fault diagnosis and fault-tolerant issues are dealt with for linear time-invariant and time-v
This book presents model-based analysis and design methods for fault diagnosis and fault-tolerant control. Architectural and structural models are used to analyse the propagation of the fault through the process, test fault detectability and reveal redundancies that can be used to ensure fault tol
<p><P>Fault-tolerant control aims at a graceful degradation of the behaviour of automated systems in case of faults. It satisfies the industrial demand for enhanced availability and safety, in contrast to traditional reactions to faults that bring about sudden shutdowns and loss of availability. </P
<P><STRONG>Fault-tolerant control aims at a graceful degradation of the behaviour of automated systems in case of faults. It satisfies the industrial demand for enhanced availability and safety, in contrast to traditional reactions to faults that bring about sudden shutdowns and loss of availabilit