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  1. International Journal of Control, Automation and Systems
  2. International Journal of Control, Automation and Systems : Volume 11
  3. International Journal of Control, Automation and Systems : Volume 11, Issue 6, December 2013
  4. Fault diagnosis of timed discrete event systems using Dioid Algebra
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International Journal of Control, Automation and Systems : Volume 15
International Journal of Control, Automation and Systems : Volume 14
International Journal of Control, Automation and Systems : Volume 13
International Journal of Control, Automation and Systems : Volume 12
International Journal of Control, Automation and Systems : Volume 11
International Journal of Control, Automation and Systems : Volume 11, Issue 6, December 2013
Intelligent digital redesign for nonlinear systems using a guaranteed cost control method
Global stabilization of a class of delay discrete-time nonlinear systems via state and output feedback
Fault diagnosis of timed discrete event systems using Dioid Algebra
2D inverse problem in a distributed parameter system
Operator-based robust control design for a human arm-like manipulator with time-varying delay measurements
Multiconsensus of second order multiagent systems with directed topologies
Systematic design of current control system for permanent magnet synchronous motors
Stability and static output feedback stabilization for a class of nonlinear discrete-time singular switched systems
Active fault tolerant control for nonlinear systems with simultaneous actuator and sensor faults
On sampled data regulation of feedback linearizable systems using a realizable reconstruction filter
Parameter identification of wiener models by multi-innovation algorithms
A sliding sector approach to quantized feedback variable structure control
White noise estimators for networked systems with packet dropouts
Geometrical distortion integrated performance index for vision-based navigation system
Variable-structured interacting multiple model algorithm for the ballistic coefficient estimation of a re-entry ballistic target
Optimal signal tracking algorithm for GNSS signal using moving set-point LQG system
Switching model predictive control of a pneumatic artificial muscle
A temporal path planner for solving information inconsistency in an integrated path planner
Visual attention servo control for task-specific robotic applications
Integrated tracking and accident avoidance system for mobile robots
On motion optimization of robotic manipulators with strong nonlinear dynamic coupling using support area level set algorithm
Development of a quadruped walking robot AiDIN-III using biologically inspired kinematic analysis
An approach of genetic programming for music emotion classification
Robust tracking design based on adaptive fuzzy control of uncertain nonlinear MIMO systems with time delayed states
International Journal of Control, Automation and Systems : Volume 11, Issue 5, October 2013
International Journal of Control, Automation and Systems : Volume 11, Issue 4, August 2013
International Journal of Control, Automation and Systems : Volume 11, Issue 3, June 2013
International Journal of Control, Automation and Systems : Volume 11, Issue 2, April 2013
International Journal of Control, Automation and Systems : Volume 11, Issue 1, February 2013
International Journal of Control, Automation and Systems : Volume 10
International Journal of Control, Automation and Systems : Volume 9
International Journal of Control, Automation and Systems : Volume 8
International Journal of Control, Automation and Systems : Volume 7

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Fault diagnosis of timed discrete event systems using Dioid Algebra

Content Provider SpringerLink
Author Baniardalani, Sobhi Askari, Javad
Copyright Year 2013
Abstract This paper deals with the fault diagnosis problem in a concurrent Timed Discrete Event System (TDES). In a TDES, concurrency leads to more complexity in the diagnoser and appears where, at a certain time, some user must choose among several resources. To cope with this problem, a new model-based diagnoser is proposed in this paper. This diagnoser uses Durational Graph (DG), a main subclass of timed automata for representing the time evolution of the TDES. The proposed diagnoser predicts all possible timed-event trajectories that may be generated by the DG. This prediction procedure is complicated for nondeterministic DG’s that are obtained for concurrent TDES’s. To solve this problem, a new Dioid Algebra, Union-Plus Algebra is introduced in this paper. Based on this Algebra, a reachability matrix is defined for a DG that plays an essential role in predicting the time behavior of TDES. By using reachability matrix, a prediction procedure is carried on via an effective equation set that is similar to linear system state equations in ordinary algebra. These results provide a suitable framework for designing an observer-based diagnoser that is illustrated by an example.
Starting Page 1095
Ending Page 1105
Page Count 11
File Format PDF
ISSN 15986446
Journal International Journal of Control, Automation and Systems
Volume Number 11
Issue Number 6
e-ISSN 20054092
Language English
Publisher Springer Berlin Heidelberg
Publisher Date 2013-11-29
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Dioid algebra durational graph event scheduling table fault diagnosis timed discrete event system Control, Robotics, Mechatronics
Content Type Text
Resource Type Article
Subject Control and Systems Engineering Computer Science Applications
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