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Keywords = cubic DUCG

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20 pages, 7015 KB  
Article
An Industrial Fault Diagnostic System Based on a Cubic Dynamic Uncertain Causality Graph
by Xusong Bu, Hao Nie, Zhan Zhang and Qin Zhang
Sensors 2022, 22(11), 4118; https://doi.org/10.3390/s22114118 - 28 May 2022
Cited by 9 | Viewed by 3338
Abstract
This study presents an industrial fault diagnosis system based on the cubic dynamic uncertain causality graph (cubic DUCG) used to model and diagnose industrial systems without sufficient data for model training. The system is developed based on cloud native technology. It contains two [...] Read more.
This study presents an industrial fault diagnosis system based on the cubic dynamic uncertain causality graph (cubic DUCG) used to model and diagnose industrial systems without sufficient data for model training. The system is developed based on cloud native technology. It contains two main parts, the diagnostic knowledge base and the inference method. The knowledge base was built by domain experts modularly based on professional knowledge. It represented the causality between events in the target industrial system in a visual and graphical form. During the inference, the cubic DUCG algorithm could dynamically generate the cubic causal graph according to the real-time data and perform the logic and probability calculations based on the generated cubic DUCG models, visually displaying the dynamic causal evolution of faults. To verify the system’s feasibility, we rebuild a fault-diagnosis model of the secondary circuit system of No. 1 at the Ningde nuclear power plant based on the new system. Twenty-four fault cases were used to test the diagnostic accuracy of the system, and all faults were correctly diagnosed. The results showed that it was feasible to use the cubic DUCG platform for fault diagnosis. Full article
(This article belongs to the Topic Advanced Systems Engineering: Theory and Applications)
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