Title :
Exploiting fuzzy reasoning optimized by Particle Swarm Optimization and adaptive thresholding to diagnose multiple faults in dynamic hybrid systems
Author :
Fliss, Imtiez ; Tagina, Moncef
Author_Institution :
SOIE Lab., Univ. of Tunis, Tunis, Tunisia
Abstract :
In this paper, a general methodology to diagnose multiple faults in hybrid dynamic systems is proposed. The considered dynamic hybrid systems exhibit continuous dynamics with discernable discrete functioning modes. The inputs of the proposed methodology are residuals representing the numerical evaluation of Analytical Redundancy Relations extended to hybrid systems. These residuals are generated due to the use of switched bond graph modeling. The evaluation of these residuals is based on the combination of adaptive thresholding and fuzzy logic reasoning optimized by Particle Swarm Optimization (PSO). The results of the detection module are displayed as a colored causal graph. This causal graph is exploited to correctly isolate multiple faults. The ongoing experiments focus on a simulation of the three-tank hydraulic system, a benchmark in the diagnosis domain.
Keywords :
fault diagnosis; fuzzy logic; fuzzy reasoning; graph colouring; numerical analysis; particle swarm optimisation; redundancy; Adaptive thresholding; PSO; analytical redundancy relations; colored causal graph; detection module; discernable discrete functioning modes; dynamic hybrid systems; fuzzy logic reasoning optimization; multiple fault diagnosis; multiple fault isolation; numerical evaluation; particle swarm optimization; residual generation; switched bond graph modeling; three-tank hydraulic system; Detectors; Fuzzy logic; Junctions; Mathematical model; Redundancy; Switches; Valves; Analytical Redundancy Relations; Particle Swarm Optimization; adaptive thresholding; fuzzy logic reasoning; hybrid system; multiple faults diagnosis; switch bond graph;
Conference_Titel :
Communications and Information Technology (ICCIT), 2012 International Conference on
Conference_Location :
Hammamet
Print_ISBN :
978-1-4673-1949-2
DOI :
10.1109/ICCITechnol.2012.6285770