Human-Centered Interfaces for a Shipyard 5.0 Cognitive Cyber–Physical System

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Ramil López, Diego
López-Lodeiro, Esteban
Vilar-Martínez, Javier

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Ramil-López, D., López-Lodeiro, E., Vilar-Martínez, J., Fernández-Caramés, T. M., & Fraga-Lamas, P. (2025). Human-Centered Interfaces for a Shipyard 5.0 Cognitive Cyber–Physical System. Engineering Proceedings, 118(1), 11. https://doi.org/10.3390/ECSA-12-26611

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Abstract

[Abstract]: Industry 5.0 represents the next stage in the industrial evolution, with a growing impact in the shipbuilding sector. In response to its challenges, Navantia, a leading international player in the field, is transforming its shipyards towards the creation of a Shipyard 5.0 through the implementation of digital technologies that enable human-centered, resilient and sustainable processes. This approach gives rise to Cognitive Cyber-Physical Systems (CCPS) in which the system can learn and where the generated data are integrated into a digital platform that supports operators in decision-making. In this scenario, different smart elements (e.g., IoT-based tows, trucks) are used to transport key components of a ship like pipes or steel plates, which are present in a large number, representing a strategic opportunity to enhance traceability in shipbuilding operations. The accurate tracking of these elements, from manufacturing to assembly, helps to improve operational efficiency and enhances safety within the shipyard environment. Considering the previous context, this paper describes a CCPS that enables tracking and real-time data visualization through portable interfaces adapted to the shipyard operator needs. Following the Industry 5.0 foundations, the presented solution is focused in providing human-centric interfaces, tackling issues like information overload, poor visual organization and accessibility of the control panels. Thus, to address such issues, an iterative human-centered redesign process was performed. This approach incorporated hands-on testing with operators at each development stage and implemented specific adjustments to improve interface clarity and reaction speed.

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Presented at the 12th International Electronic Conference on Sensors and Applications (ECSA-12 2025), 12–14 November 2025; Available online: https://sciforum.net/event/ECSA-12.

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Attribution 4.0 International
Attribution 4.0 International

Except where otherwise noted, this item's license is described as Attribution 4.0 International