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A non-linear programming-based similarity reasoning scheme for modelling of monotonicity-preserving multi-input fuzzy inference systems
journal contribution
posted on 2012-01-01, 00:00 authored by K Tay, T Jee, Chee Peng LimChee Peng LimIn this paper, the zero-order Sugeno Fuzzy Inference System (FIS) that preserves the monotonicity property is studied. The sufficient conditions for the zero-order Sugeno FIS model to satisfy the monotonicity property are exploited as a set of useful governing equations to facilitate the FIS modelling process. The sufficient conditions suggest a fuzzy partition (at the rule antecedent part) and a monotonically-ordered rule base (at the rule consequent part) that can preserve the monotonicity property. The investigation focuses on the use of two Similarity Reasoning (SR)-based methods, i.e., Analogical Reasoning (AR) and Fuzzy Rule Interpolation (FRI), to deduce each conclusion separately. It is shown that AR and FRI may not be a direct solution to modelling of a multi-input FIS model that fulfils the monotonicity property, owing to the difficulty in getting a set of monotonically-ordered conclusions. As such, a Non-Linear Programming (NLP)-based SR scheme for constructing a monotonicity-preserving multi-input FIS model is proposed. In the proposed scheme, AR or FRI is first used to predict the rule conclusion of each observation. Then, a search algorithm is adopted to look for a set of consequents with minimized root means square errors as compared with the predicted conclusions. A constraint imposed by the sufficient conditions is also included in the search process. Applicability of the proposed scheme to undertaking fuzzy Failure Mode and Effect Analysis (FMEA) tasks is demonstrated. The results indicate that the proposed NLP-based SR scheme is useful for preserving the monotonicity property for building a multi-input FIS model with an incomplete rule base.
History
Journal
Journal of intelligent and fuzzy systemsVolume
23Issue
2-3Pagination
71 - 92Publisher
IOS PressLocation
Amsterdam, The NetherlandsPublisher DOI
ISSN
1064-1246eISSN
1875-8967Language
engPublication classification
C1.1 Refereed article in a scholarly journalCopyright notice
2012, IOS PressUsage metrics
Keywords
analogical reasoningfailure mode and effect analysisFuzzy inference systemfuzzy rule interpolationmonotonicity propertynon-linear programmingsimilarity reasoningScience & TechnologyTechnologyComputer Science, Artificial IntelligenceComputer ScienceMAMDANI-ASSILIAN MODELSFAILURE MODEPRIORITIZATIONINTERPOLATIONMETHODOLOGYDIAGNOSISFMEAArtificial Intelligence and Image Processing