The Master in Robotics and Advanced Construction (MRAC) seeks to train a new generation of interdisciplinary professionals who are capable of facing our growing need for a more sustainable and optimised construction ecosystem. The Master is focused on the emerging design and market opportunities arising from novel robotic and advanced manufacturing systems.

Through a mixture of seminars, workshops, and studio projects, the master programme challenges the traditional processes in the Construction Sector. It investigates how advances in robotics and digital fabrication tools change the way we build and develop processes and design tools for such new production methods.


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WOVEN EARTH: FROM CRAFT TO INTELLIGENT ARCHITECTURE

A Hybrid Robotic-Human System for Adaptive Woven-Earthen Construction Abstract Woven Earth reinterprets traditional willow weaving and earth construction as a digitally informed architectural system. Drawing from vernacular techniques such as wattle and daub, the project develops a hybrid construction method combining woven willow, variable-thickness cavities, and robotic fabrication. Infill strategies layer light earth and straw … Read more

Robotics for Ecological Buildings : WOOD

Catalonia is 50.6% forest. Within that territory, Aleppo Pine and Common Beech offer two contrasting structural profiles that can be processed with minimal industrial transformation — provided the right techniques are recovered and updated. This mid-term review documents the first half of our Studio II research into robotic steam-bending: a workflow that pairs a vernacular … Read more

Robotics for Ecological Buildings: STRAW

This work investigates the structural potential of straw in its raw, unprocessed state — exploiting its natural wilderness and fibrous friction to build systems from its inherent properties. By coupling these material behaviors with robotic fabrication, the process becomes parameterized, enabling a vernacular material to be deployed within a precise and predictable architectural system. Introduction … Read more

Robotics for Ecological Buildings : CLAY

This work explores how clay can be used to introduce compression strength into flexible surfaces. By using robotics for controlled deposition, the process becomes parameterised, allowing a traditional material to be developed into a precise and predictable building system. Introduction This project proposes a system that transforms a flexible surface into a rigid, three-dimensional structure. … Read more