From Structural Analysis to Observer–Based Residual Generation for Fault Detection

Author:

Pröll Sebastian1,Lunze Jan2,Jarmolowitz Fabian1

Affiliation:

1. Robert Bosch GmbH Robert-Bosch-Campus 1, D-71272 Renningen , Germany

2. Institute of Automation and Computer Control Ruhr University Bochum, Universit¨atsstraße 150, D-44801 Bochum , Germany

Abstract

Abstract This paper combines methods for the structural analysis of bipartite graphs with observer-based residual generation. The analysis of bipartite structure graphs leads to over-determined subsets of equations within a system model, which make it possible to compute residuals for fault detection. In observer-based diagnosis, by contrast, an observability analysis finds observable subsystems, for which residuals can be generated by state observers. This paper reveals a fundamental relationship between these two graph-theoretic approaches to diagnosability analysis and shows that for linear systems the structurally over-determined set of model equations equals the output connected part of the system. Moreover, a condition is proved which allows us to verify structural observability of a system by means of the corresponding bipartite graph. An important consequence of this result is a comprehensive approach to fault detection systems, which starts with finding the over-determined part of a given system by means of a bipartite structure graph and continues with designing an observerbased residual generator for the fault-detectable subsystem found in the first step.

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

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