NASA NTRS · 20130010948
Improving Distributed Diagnosis Through Structural Model Decomposition
Abstract
Complex engineering systems require efficient fault diagnosis methodologies, but centralized approaches do not scale well, and this motivates the development of distributed solutions. This work presents an event-based approach for distributed diagnosis of abrupt parametric faults in continuous systems, by using the structural model decomposition capabilities provided by Possible Conflicts. We develop a distributed diagnosis algorithm that uses residuals computed by extending Possible Conflicts to build local event-based diagnosers based on global diagnosability analysis. The proposed approach is applied to a multitank system, and results demonstrate an improvement in the design of local diagnosers. Since local diagnosers use only a subset of the residuals, and use subsystem models to compute residuals (instead of the global system model), the local diagnosers are more efficient than previously developed distributed approaches.
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Bregon, Anibal, Daigle, Matthew John, Roychoudhury, Indranil, Biswas, Gautam, Koutsoukos, Xenofon, Pulido, Belarmino. 2011-10-04. Improving Distributed Diagnosis Through Structural Model Decomposition. https://ntrs.nasa.gov/citations/20130010948
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