Text Case-Based Reasoning Framework for Fault Diagnosis and Predication by Cloud Computing

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Abstract

In Discrete Event System, such as railway onboard system, overwhelming volume of textual data is recorded in the form of repair verbatim collected during the fault diagnosis process. Efficient text mining of such maintenance data plays an important role in discovering the best-practice repair knowledge from millions of repair verbatims, which help to conduct accurate fault diagnosis and predication. This paper presents a text case-based reasoning framework by cloud computing, which uses the diagnosis ontology for annotating fault features recorded in the repair verbatim. The extracted fault features are further reduced by rough set theory. Finally, the case retrieval is employed to search the best-practice repair actions for fixing faulty parts. By cloud computing, rough set-based attribute reduction and case retrieval are able to scale up the Big Data records and improve the efficiency of fault diagnosis and predication. The effectiveness of the proposed method is validated through a fault diagnosis of train onboard equipment.

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Zhong, Z., Xu, T., Wang, F., & Tang, T. (2018). Text Case-Based Reasoning Framework for Fault Diagnosis and Predication by Cloud Computing. Mathematical Problems in Engineering, 2018. https://doi.org/10.1155/2018/9464971

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