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Title
An Industrial HMI Temporal Adaptation based on Operator-Machine Interaction Sequence Similarity
Author
Reguera-Bakhache, Daniel
Garitano, Iñaki
Uribeetxeberria, Roberto
Cernuda, Carlos
Research Group
Análisis de datos y ciberseguridad
Version
Postprint
Rights
© 2021 IEEE
Access
Open access
URI
https://hdl.handle.net/20.500.11984/6962
Publisher’s version
https://doi.org/10.1109/ICIT46573.2021.9453580
Published at
IEEE Internacional Conference on Industrial Technology (ICIT)  22. Valencia 10-12 marzo 2021
Publisher
IEEE
Keywords
Industrial HMI
Adaptive user interfaces
Interaction Patterns
Abstract
The incorporation of Artificial Intelligence (AI) into Industrial Environments has brought about a Smart Industry revolution, improving efficiency and simplifying complex industrial processes. However ... [+]
The incorporation of Artificial Intelligence (AI) into Industrial Environments has brought about a Smart Industry revolution, improving efficiency and simplifying complex industrial processes. However, these technological advances remain primarily focused on the process, and pay little attention to industrial Human-Machine Interfaces (HMI), the bridge between the operator and the industrial process.Current industrial HMIs have a static design, and are focused exclusively on the control and visualization of process information. They fail to take into account user behaviour and skills, information key to understanding how the operator interacts with the production process. Thus, the potential beneficial outcomes of considering operator-machine interaction in terms of efficiency and productivity, make a compelling case for industrial HMIs that can adapt to different operators based on their skills and process knowledge.This paper proposes a Machine Learning (ML) based method-ology capable of analysing operator-machine interaction and detecting the variability of interaction patterns for repetitive similar sequences in monitoring and control tasks. The method-ology generates a set of adaptation rules that improve Usability and User Experience, and hence operator working performance. To validate the proposed methodology, an experiment with real operators was conducted. [-]
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