MINOTAUR - Miniaturized Robotic Systems for Autonomous In-Situ Exploration of Critical Raw Materials In Deep Land Deposits

On going
About

MINOTAUR seeks to address the exploration drilling problem from a novel and revolutionary perspective, bringing together geological principles and concepts involved in exploration drilling with modern technologies such as robotics, digital twin technology, and artificial intelligence. Along the way, MINOTAUR proposes novel research directions in allied areas like geophysics, sensing technologies in geology, environmental impact modeling of whole mineral and production systems, numerical modeling of entire mineral systems related to critical raw materials, new drilling techniques, high-resolution sensing technologies, and artificial intelligence with novel data processing tools for a robust and expeditious geological assessment.
MINOTAUR takes a fundamentally fresh look at exploration drilling and approaches it as a source seeking and resourcing mapping problem, drawing inspirations from solutions in robotics, but where geology is a central part of the decision, with the outcomes of exploration enhanced through artificial intelligence and digital twin technology.

Keywords:
Engineering, Environment, Environmental Modelling
Start Date:
End Date:
CERENA Role:
Partner

Coordinator/Local PI

CERENA Team

Proponent Institution

Lulea Tekniska Universitet, Sweden

Partners

DANMARKS TEKNISKE UNIVERSITET (Denmark)
POLITECHNIKA WROCLAWSKA (Poland)
IST-ID - ASSOCIAÇÃO DO INSTITUTO SUPERIOR TÉCNICO PARA A INVESTIGAÇÃO E O DESENVOLVIMENTO (Portugal)
PANEPISTIMIO PATRON (Greece)
INDUSTRIAL MINERALS ASSOCIATION EUROPE AISBL (Belgium)
COMMUNITY FORGED INNOVATION IKE (Greece)
TERNA LEFKOLITHOI ANONYMI METALLEUTIKI EMPORIKI TECHNIKI VIOMICHANIKI ETAIREIA (Greece)

Funding Programme

HORIZON-CL4-2024-RESILIENCE-01-01

Total Funding
4 993 302,50 €
CERENA Funding
554 302,50 €

Funding Entities

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