Non-Linear Engine Component Fault Diagnosis From a Limited Number of Measurements Using a Combinatorial Approach

Author:

Aretakis N.1,Mathioudakis K.1,Stamatis A.1

Affiliation:

1. National Technical University of Athens, Athens, Greece

Abstract

A method for diagnosing component faults of jet engines is presented. It uses non-linear gas path analysis techniques to determine the values of health parameters, with the help of a suitably formulated engine simulation model. The incentive of the method is to achieve the determination of the values of component health indices when a limited number of measured quantities is available, which do not allow the determination of all the fault indices simultaneously. A combinatorial approach is introduced, in order to circumvent the problem of the insufficient information for determining a full set of indices. After obtaining a set of possible solutions, a selection procedure is applied to isolate the ones that can give the actual fault identity. Quantification of the fault comes at a final step, when the faulty component has been identified. Different scenarios of faults on a twin spool partially mixed turbofan engine are considered in order to demonstrate the effectiveness of the method. The limitations of the method are also discussed.

Publisher

ASMEDC

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4. Regularization Method Combined with Parameter Competitive Criterion for Model-Plant Performance Matching of Aircraft Engine;Communications in Computer and Information Science;2011

5. Gas turbine component fault detection from a limited number of measurements;Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy;2004-12-01

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