Development of an Advanced Multi-Layer Digital Twin Conceptual Framework for Underground Mining
Carlos Cacciuttolo, Edison Atencio, Seyedmilad Komarizadehasl, Jose Antonio Lozano-Galant

TL;DR
This paper proposes a multi-layer digital twin framework for underground mining to improve safety, productivity, and decision-making through real-time data and simulation.
Contribution
The novel contribution is an advanced, multi-layer conceptual framework for underground mine digital twins, validated through expert feedback.
Findings
A digital twin framework for underground mining includes real-time monitoring, anomaly prediction, and scenario simulation.
Expert validation confirmed the framework's potential to enhance operational optimization and safety in mining.
Challenges include high integration complexity, cost, and resistance to change, requiring strategic partnerships and training.
Abstract
Digital mining has been evolving in recent years under the Industry 4.0 paradigm. In this sense, technological tools such as sensors aid the management and operation of mining projects, reducing the risk of accidents, increasing productivity, and promoting business sustainability. DT (Digital Twin) is a technological tool that enables the integration of various Industry 4.0 technologies to create a virtual model of a real, physical entity, allowing for the study and analysis of the model’s behavior through real-time data collection. A digital twin of an underground mine is a real-time, virtual replica of an actual mine. It is like an extremely detailed “simulator” that uses data from sensors, machines, and personnel to accurately reflect what is happening in the mine at that very moment. Some of the functionalities of an underground mining DT include (i) accurate geometry of the real…
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Taxonomy
TopicsDigital Transformation in Industry · Mining Techniques and Economics · Belt Conveyor Systems Engineering
