Events3rd International Electronic Conference on Sensors and Applications
Published
This submission belongs to the session P. Posters of the event 3rd International Electronic Conference on Sensors and Applications
Published date
28 Nov, 2016
Citation
Stefano Mariani, Silvia Andreozzi, Gaia Ilenia Bessone, Matteo Botto Poala, Martina Bovo, Silvia Fernandez De Alaiza Amado, Emanuele Giargia, Alessandro Niccolai, Viola Papetti, Francesco Braghin, Origami-inspired smart building skin, in Proceedings of 3rd International Electronic Conference on Sensors and Applications, 15 November–30 November 2016, MDPI: Basel, Switzerland, doi: 10.3390/ecsa-3-P004
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Origami-inspired smart building skin

Gaia Ilenia Bessone 2
Matteo Botto Poala 3
Martina Bovo 4
Silvia Fernandez De Alaiza Amado 4
Emanuele Giargia 5
Alessandro Niccolai 6
Viola Papetti 6
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1. Politecnico di Torino, Mathematical Engineering
2. Politecnico di Milano, Interior Design
3. Politecnico di Torino, Architecture
4. Politecnico di Milano, Architecture
5. Politecnico di Torino, Mechanical Engineering
6. Politecnico di Milano, Mechanical Engineering
7. Politecnico di Milano, Department of Mechanical Engineering
8. Politecnico di Milano, Department of Civil and Environmental Engineering, Italy
Abstract

We propose the design of an environment-responsive, deployable origami-inspired structure to be used as a smart building skin. The folding structure is composed by rigid panels connected to each other through hinge-like connectors. The overall degree of openness of the whole structure is adjusted in response to variations of environmental parameters like lighting and temperature, recorded by a network of embedded sensors. The geometry and kinematics of the origami are selected so as the deployment of each module can be induced at some key points that only slide along a linear axis; in this way, electric motors with a positional control logic can prove efficient. By properly tuning the properties of each panel mounted on the frames, the proposed solution can be adopted as a shading or light refraction system, thus improving the comfort of the building interiors.

Through digital prototyping and small-scale models, the effectiveness of the proposed solution is assessed. Some site-specific applications are finally discussed from the self-sensing, self-actuation and self-powering viewpoints.

Keywords
Adaptive systems
Deployable structures
Modular origami structures
Self sensing and actuation
Manuscript
Poster
smart_presentation.pdf
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