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- 03 JulHyperbody's MSc 2 Robotic Environments projects exhibited at Science Centre and V2_
- 02 Jul Hyperbody's Robotic Building team participates with MSc 2 projects in the D2RP event taking place 2-4 July at V2_
- 27 JunLecture by Prof. Kas Oosterhuis at the Huazhong University of Science and Technology
- 27 JunAchilleas Psyllidis publishes a book chapter in Computer-Aided Architectural Design Futures: The Next City, by Springer
- 16 JunLecture by Prof. Kas Oosterhuis at Leibniz Universität Hannover
- 16 JunAchilleas Psyllidis wins the 1st Prize for his project ROUTE on Linked Open Data for Smart Cities
- 14 JunDr. Nimish Biloria appointed as a member of the OCEAN design research association
- 08 JunSmart Textiles Workshop: Hyperbody and Smart Textiles at the University of Borås
- 29 MayAchilleas Psyllidis's paper accepted for publication and demonstration at the 15th International Conference on Web Engineering (ICWE 2015)
- 29 MayKas Oosterhuis, Henriette Bier, Sina Mostafavi and Jelle Feringa lecture at InDeSem 15
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Monday 24th April 2017 at Dessau Institute of Architecture (DIA) : Midterm Review MSc 2 Design Studio D2RP&O
http://ip.hyperbody.nl
D2RP&O is organised in collaboration with Dessau Institute of Architecture (DIA) and will involve two workshops organised at TUD and DIA, respectively, at which students from both institution will participate. D2RP focuses on linking design to materialisation by integrating all functionalities (from structural strength, to thermal insulation and climate control) in the design of building components. This is implemented by employing novel multi-performative D2RP strategies. New materials are developed for the robotic production of multi-material building components and novel robotic production and assembly tools are deployed for testing the blueprint of future robotic building. D2RP&O establishes the framework allowing successful implementation of robotic production and operation at building scale. The main consideration is that in architecture and building construction the factory of the future employs building materials and components that can be robotically processed and assembled. D2RP&O processes incorporate material properties in design, control all aspects of the processes numerically, and utilise parametric design principles that can be linked to the robotic production. Virtual modelling and simulation interface the production and real-time operation of physically built space establishing thereby an unprecedented design to production and operation feedback loop.