2012, Wireless networks and mobile communications, ISBN 1439811083, Volume 19, xi, 350
"A class of Delay Tolerant Networks (DTN), which may violate one or more of the assumptions regarding the overall performance characteristics of the underlying...
Computer networks | Reliability | Routing (Computer network management) | Fault-tolerant computing
Computer networks | Reliability | Routing (Computer network management) | Fault-tolerant computing
Book
2006, 2nd ed., ISBN 9783540356523, xvii, 672
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...
Automatic control | Fault location (Engineering) | Energy Technology & Engineering | Quality Control, Reliability, Safety and Risk | Engineering | System Performance and Evaluation | Control Engineering | Industrial Chemistry/Chemical Engineering | Automation and Robotics
Automatic control | Fault location (Engineering) | Energy Technology & Engineering | Quality Control, Reliability, Safety and Risk | Engineering | System Performance and Evaluation | Control Engineering | Industrial Chemistry/Chemical Engineering | Automation and Robotics
Book
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 06/2015, Volume 62, Issue 6, pp. 3757 - 3767
With the continuous increase in complexity and expense of industrial systems, there is less tolerance for performance degradation, productivity decrease, and...
Fault diagnosis | Analytical redundancy | real-time monitoring | fault tolerance | Fault tolerant systems | Redundancy | Observers | Control systems | model-based fault diagnosis | Kalman filters | signal-based fault diagnosis | Fault tolerance | Model-based fault diagnosis | Signalbased fault diagnosis | Real-time monitoring | INTEGRAL OBSERVER DESIGN | DISCRETE-EVENT SYSTEMS | UNKNOWN INPUT | STOCHASTIC DISTRIBUTION-SYSTEMS | VIBRATION SIGNAL | ENGINEERING, ELECTRICAL & ELECTRONIC | ADAPTIVE-OBSERVER | INSTRUMENTS & INSTRUMENTATION | ANOMALY DETECTION | INDUCTION-MOTOR | DESCRIPTOR SYSTEMS | QUANTITATIVE MODEL | AUTOMATION & CONTROL SYSTEMS | Abnormalities | Tolerances | Real time | Performance degradation | Dangerous
Fault diagnosis | Analytical redundancy | real-time monitoring | fault tolerance | Fault tolerant systems | Redundancy | Observers | Control systems | model-based fault diagnosis | Kalman filters | signal-based fault diagnosis | Fault tolerance | Model-based fault diagnosis | Signalbased fault diagnosis | Real-time monitoring | INTEGRAL OBSERVER DESIGN | DISCRETE-EVENT SYSTEMS | UNKNOWN INPUT | STOCHASTIC DISTRIBUTION-SYSTEMS | VIBRATION SIGNAL | ENGINEERING, ELECTRICAL & ELECTRONIC | ADAPTIVE-OBSERVER | INSTRUMENTS & INSTRUMENTATION | ANOMALY DETECTION | INDUCTION-MOTOR | DESCRIPTOR SYSTEMS | QUANTITATIVE MODEL | AUTOMATION & CONTROL SYSTEMS | Abnormalities | Tolerances | Real time | Performance degradation | Dangerous
Journal Article
Dependable computing and fault-tolerant systems, ISSN 0932-5581, 1987
Journal
2011, 1, ISBN 9780120885251, 400
There are many applications in which the reliability of the overall system must be far higher than the reliability of its individual components. In such cases,...
Fault-tolerant computing | Computer Hardware & Operating Systems | Computer systems - Reliability | Software Requirements | Computer system failures | Reliability | Computer systems
Fault-tolerant computing | Computer Hardware & Operating Systems | Computer systems - Reliability | Software Requirements | Computer system failures | Reliability | Computer systems
eBook
2009, 1. Aufl., Advances in industrial control., ISBN 9781848825604, xxi, 266
Unmanned aerial vehicles (UAVs) offer a means of gathering intelligence and carrying out missions. The benefits are considerable in terms of cost, efficiency,...
Drone aircraft | Guidance systems (Flight) | Mechanical engineering & materials | Engineering | Vibration, Dynamical Systems, Control | Automotive Engineering | Control | Control , Robotics, Mechatronics | Fault tolerance (Engineering)
Drone aircraft | Guidance systems (Flight) | Mechanical engineering & materials | Engineering | Vibration, Dynamical Systems, Control | Automotive Engineering | Control | Control , Robotics, Mechatronics | Fault tolerance (Engineering)
Book
2008, ISBN 0849371996, xviii, 292
Book
IEEE Transactions on Industrial Electronics, ISSN 0278-0046, 06/2015, Volume 62, Issue 6, pp. 3768 - 3774
This is the second-part paper of the survey on fault diagnosis and fault-tolerant techniques, where fault diagnosis methods and applications are overviewed,...
active fault diagnosis | fault tolerance | Knowledge based systems | Fault diagnosis | Support vector machines | Analytical redundancy | real-time monitoring | Fault detection | Feature extraction | knowledge-based fault diagnosis | Real-time systems | Monitoring | hybrid fault diagnosis | Fault tolerance | Knowledge-based fault diagnosis | Active fault diagnosis | Hybrid fault diagnosis | Real-time monitoring | SUPPORT VECTOR MACHINES | ANN | EXPERT-SYSTEM | MODEL | PCA | ENGINEERING, ELECTRICAL & ELECTRONIC | SIGNED DIRECTED GRAPH | INSTRUMENTS & INSTRUMENTATION | analytical redundancy | AUTOMATION & CONTROL SYSTEMS | Industrial electronics | Paper | Knowledge base | Diagnosis
active fault diagnosis | fault tolerance | Knowledge based systems | Fault diagnosis | Support vector machines | Analytical redundancy | real-time monitoring | Fault detection | Feature extraction | knowledge-based fault diagnosis | Real-time systems | Monitoring | hybrid fault diagnosis | Fault tolerance | Knowledge-based fault diagnosis | Active fault diagnosis | Hybrid fault diagnosis | Real-time monitoring | SUPPORT VECTOR MACHINES | ANN | EXPERT-SYSTEM | MODEL | PCA | ENGINEERING, ELECTRICAL & ELECTRONIC | SIGNED DIRECTED GRAPH | INSTRUMENTS & INSTRUMENTATION | analytical redundancy | AUTOMATION & CONTROL SYSTEMS | Industrial electronics | Paper | Knowledge base | Diagnosis
Journal Article
1986, ISBN 9780133082227, 2 v.
Book
2018, 1, Automation and control engineering series, ISBN 1138089028, xvii, 221 pages
The purpose of the book is to provide an exposition of recently developed adaptive and fault-tolerant control of underactuated nonlinear systems. Underactuated...
Automatic control | Nonlinear control theory | Adaptive control systems | Power Electronics | Aerospace Engineering | Systems & Controls
Automatic control | Nonlinear control theory | Adaptive control systems | Power Electronics | Aerospace Engineering | Systems & Controls
Book
1987, ISBN 9780818686771, vii, 419
Book
1997, The Kluwer international series in engineering and computer science, ISBN 9780792399223, Volume SECS 401., xxix, 183
Book
1994, McGraw-Hill series on computer engineering, ISBN 9780070375154, xx, 412
Book
1986, ISBN 9780133082227, 2 v. (xvi, 696, 8 p.)
Book
2003, Lecture notes in control and information sciences, ISBN 3540003185, Volume 287., xxix, 210
Modern technological systems rely on sophisticated control functions to meet increased performance requirements. For such systems, Fault Tolerant Control...
Automatic control | Fault location (Engineering) | Reliability | Stochastic processes | Engineering mathematics | Vibration, Dynamical Systems, Control | Vibration | Control, Robotics, Mechatronics | Systems Theory, Control | Mathematical and Computational Engineering | Control and Systems Theory | Systems theory
Automatic control | Fault location (Engineering) | Reliability | Stochastic processes | Engineering mathematics | Vibration, Dynamical Systems, Control | Vibration | Control, Robotics, Mechatronics | Systems Theory, Control | Mathematical and Computational Engineering | Control and Systems Theory | Systems theory
Book
Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), ISSN 0302-9743, 2019, Volume 11340, pp. 234 - 251
Journal Article
1996, ISBN 0130578878, xvi, 550
Book
03/2019, Studies in Systems, Decision and Control, ISBN 9783030118686, Volume 197, 231
Robust and Fault-Tolerant Control proposes novel automatic control strategies for nonlinear systems developed by means of artificial neural networks and pays...
Fault tolerance (Engineering) | Control and Systems Theory | Engineering | Automotive Engineering | Industrial Chemistry/Chemical Engineering | Aerospace Technology and Astronautics | Artificial Intelligence
Fault tolerance (Engineering) | Control and Systems Theory | Engineering | Automotive Engineering | Industrial Chemistry/Chemical Engineering | Aerospace Technology and Astronautics | Artificial Intelligence
eBook
Automatica, ISSN 0005-1098, 06/2016, Volume 68, pp. 228 - 236
In this work, we present a novel fault tolerant leader–follower formation control scheme for a group of underactuated autonomous surface vessels with partially...
System constraints | Leader–follower formation | Actuator faults | Autonomous surface vessels | Finite-time convergence | Leader-follower formation | Actuators | Analysis | Aerospace engineering | Fault tolerance | Uncertainty | Mathematical analysis | Control surfaces | Tracking errors | Formations | Autonomous | Line of sight
System constraints | Leader–follower formation | Actuator faults | Autonomous surface vessels | Finite-time convergence | Leader-follower formation | Actuators | Analysis | Aerospace engineering | Fault tolerance | Uncertainty | Mathematical analysis | Control surfaces | Tracking errors | Formations | Autonomous | Line of sight
Journal Article
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