Toward a Framework for Capturing Interpretability of Hierarchical Fuzzy Systems - A Participatory Design Approach

Hierarchical fuzzy systems (HFSs) have been shown to have the potential to improve the interpretability of fuzzy logic systems (FLSs). However, challenges remain, such as 'How can we measure their interpretability?' 'How can we make an informed assessment of how HFSs should be designe...

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Bibliographic Details
Published in:IEEE Transactions on Fuzzy Systems
Main Author: Razak T.R.; Garibaldi J.M.; Wagner C.; Pourabdollah A.; Soria D.
Format: Article
Language:English
Published: Institute of Electrical and Electronics Engineers Inc. 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85079601697&doi=10.1109%2fTFUZZ.2020.2969901&partnerID=40&md5=665eca84329230ecc58f9f5b5394b7dd
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Summary:Hierarchical fuzzy systems (HFSs) have been shown to have the potential to improve the interpretability of fuzzy logic systems (FLSs). However, challenges remain, such as 'How can we measure their interpretability?' 'How can we make an informed assessment of how HFSs should be designed to enhance interpretability?' The challenges consist of measuring the interpretability of HFSs include issues such as their topological structure, the number of layers, the meaning of intermediate variables, and so on. In this article, an initial framework to measure the interpretability of HFSs is proposed, combined with a participatory user design process to create a specific instance of the framework for an application context. This approach enables the subjective views of a range of practitioners, experts in the design and creation of FLSs, to be taken into account in shaping the design of a generic framework for measuring interpretability in HFSs. This design process and framework are demonstrated through two classification application examples, showing the ability of the resulting index to appropriately capture interpretability as perceived by system design experts. © 1993-2012 IEEE.
ISSN:10636706
DOI:10.1109/TFUZZ.2020.2969901