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The new science and technology of edible robots and robotic food for humans and animals

Projektbeschreibung

Roboter auf der Speisekarte

Die Lebensmittelbranche und die Robotertechnik haben völlig verschiedene Einschränkungen und Eigenschaften. Was geschieht daher, wenn die beiden zusammengebracht werden? Genau das hat das EU-finanzierte Projekt ROBOFOOD vor. Das Projekt wird zum ersten Mal in der Geschichte Roboter, die gegessen werden können, und Lebensmittel, die sich wie Roboter verhalten, erschaffen. Es wird sich Prinzipien der weichen Robotik und fortgeschrittene Lebensmittelverarbeitungsmethoden zunutze machen, um neue Gestaltungsmöglichkeiten für essbare Roboter und robotische Lebensmittel zu eröffnen, und wird diese mit Konzeptnachweistechnologien für den Tierschutz, die Menschenrettung und die menschliche Ernährung erproben. Diese Roboter könnten eines Tages genutzt werden, um Menschen und Tieren in Not zu helfen.

Ziel

Ordering your pizza and having it delivered in a few minutes by a drone? That could soon be routine. But what about having the drone itself for dessert, instead of sending it back? That would be entirely new technological territory with applications far beyond take-away meals. By combining food science and robotic science in a radically new way, the ROBOFOOD project will for the first time create robots that can be eaten and foods that behave like robots. Such edible robots could deliver lifesaving
nutrition to humans in emergency situation; they could supply vaccines and supplements to endangered animal
species; robotic food with edible actuators and electronics, on the other hand, could tell us when it is well preserved and safe to eat; it could protect itself from excessive heat or humidity during storage; it could facilitate swallowing for neurologic patients, and interact with humans and animals in totally new ways, to address dietary goals or influence eating habits. These goals require an interdisciplinary investigation into the principles of robotics and food science, which have very different and contrasting properties. Traditional robots are inorganic systems that perceive the environment and perform actions. Food instead is mostly organic material that can be digested and metabolized to support life. We will use soft robotic principles and advanced food processing methods to establish a common ground, and pave the way towards a new design space for edible robots and robotic food. We will validate it with proof-of-concept technologies for animal preservation, human rescue, human nutrition. The project is profoundly interdisciplinary, merging two fields that have hardly ever interacted before and pushing them well beyond the state of the art; its ambitious science-based technological breakthroughs have the potential to address environmental and health problems, and also The new science and technology of edible robots and robotic food for humans and animals

Schlüsselbegriffe

Aufforderung zur Vorschlagseinreichung

H2020-FETOPEN-2018-2020

Andere Projekte für diesen Aufruf anzeigen

Unterauftrag

H2020-FETOPEN-2018-2019-2020-01

Koordinator

ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE
Netto-EU-Beitrag
€ 1 281 250,00
Adresse
BATIMENT CE 3316 STATION 1
1015 Lausanne
Schweiz

Auf der Karte ansehen

Region
Schweiz/Suisse/Svizzera Région lémanique Vaud
Aktivitätstyp
Higher or Secondary Education Establishments
Links
Gesamtkosten
€ 1 281 250,00

Beteiligte (3)