K. Ramkumar, M. Druckenmuller, Y. Xi, P. Philips, H. Presig, W.K. Ho, K. Lim
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A fault-detection and diagnosis scheme by dynamic computation of finite-state automaton tables
This paper addresses the problem of fault-detection and diagnosis using finite-state automaton (FSA) models. These models partition the state-space into finite regions and contain information on system trajectory across these regions. A framework for modeling faults using FSA models is discussed. A fault-detection shell which dynamically generates automaton tables is developed. The algorithm is illustrated with a case study.