
Model-Based Fault Diagnosis Techniques by Steven X Ding
Basic Ideas, Major Issues, and Tools in the Observer-Based FDI Framework.- Modelling of Technical Systems.- Structural Fault Detectability, Isolability and Identifiability.- Basic Residual Generation Methods.- Perfect Unknown Input Decoupling.- Residual Generation with Enhanced Robustness against Unknown Inputs.- Residual Generation with Enhanced Robustness against Model Uncertainties.- Norm-Based Residual Evaluation and Threshold Computation.- Statistical-Methods-Based Residual Evaluation and Threshold Setting.- Integration of Norm-Based and Statistical Methods.- Integrated Design of Fault Detection Systems.- Fault Isolation Schemes.-
Robust Autonomous Guidance
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Robust Model Predictive Control for Autonomous Underwater Vehicles
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Model-Based Control of Mass–Stiffness–Damping Systems
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Pneumatic Servo Systems Analysis
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Control of Large Wind Energy Systems
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Predictive Functional Control
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Advanced Control and Supervision of Mineral Processing Plants
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Networked and Distributed Predictive Control
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Fault Detection and Fault-Tolerant Control Using Sliding Modes
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Reset Control Systems
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Industrial Process Identification and Control Design
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Cooperative Control of Multi-agent Systems
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Sliding-Mode Control of PEM Fuel Cells
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Control of Integral Processes with Dead Time
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Internet-based Control Systems
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Drives and Control for Industrial Automation
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PID Control in the Third Millennium
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Model Predictive Control of Wastewater Systems
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Structured Controllers for Uncertain Systems
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Fractional-order Systems and Controls
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Quad Rotorcraft Control
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Active Control of Flexible Structures
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Detection and Diagnosis of Stiction in Control Loops
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Motion Coordination for VTOL Unmanned Aerial Vehicles
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Vehicle-Manipulator Systems
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Optimal Control of Hybrid Vehicles
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Optimal Control and Optimization of Stochastic Supply Chain Systems
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Dynamics and Control of Switched Electronic Systems
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Hybrid Predictive Control for Dynamic Transport Problems
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Multivariate Statistical Process Control
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Adaptive Control of Solar Energy Collector Systems
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Practical Grey-box Process Identification
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Relay Tuning of PID Controllers
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Control of Solar Energy Systems
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Deadlock Resolution in Automated Manufacturing Systems
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Induction Motor Control Design
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Data-driven Methods for Fault Detection and Diagnosis in Chemical Processes
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Dynamics and Control of Industrial Cranes
Steven X. Ding began investigating issues concerned with model-based fault detection and identification in 1986 during his PhD. Following a three-year stay in industry, in which he gained experience with the application of FDI techniques in real technical processes, he returned to academia and during the last 17 years has become a university professor and institute head. He has been involved with numerous national and international research grants and industrial projects in the development of advanced FDI methods and their application in different sectors of industry. He teaches fault diagnosis and fault-tolerant systems to Masters students and advanced FDI methods to PhD students at the University of Duisburg-Essen. He has also guest-lectured and taught courses on these subjects at other universities and research institutes. Professor Ding has published more than 80 journal and 130 conference papers associated with the field of FDI.
| SKU | Unavailable |
| ISBN 13 | 9781447147985 |
| ISBN 10 | 1447147987 |
| Title | Model-Based Fault Diagnosis Techniques |
| Author | Steven X Ding |
| Series | Advances In Industrial Control |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer London Ltd |
| Year published | 2013-01-02 |
| Number of pages | 504 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |





































