Projects

Different projects of CYBRES

Optimal Vertical Farm

Optimal vertical farm This internal project focuses on optimizing vertical farms and developing biofeedback-based mechanisms to increase the production of microgreens, wheatgrass, leafy greens and other plant species for indoor cultivation. https://www.youtube.com/watch?v=FnSfBBJLM88https://www.youtube.com/watch?v=BycNSBdkW5Qhttps://www.youtube.com/watch?v=zKGupefUdeE

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LED-horticulture

LED-based technology in horticulture The effects of LED emission on biological organisms are well known. Current literature indicates a response of cellular metabolism to different emission spectra, especially infrared, combinations of red and blue, blue and green, and other spectra of LED emission. Research has been conducted on the effects of LED light on animal

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BIOHYBRIDS

BIOHYBRIDS: Biohybrid phytosensing system for plant-technology interactions in mixed-reality and smart-home systems CORDIS information Objective This innovation is related to an embedded electronic system connected to plants and trees – so-called phytosensor — which measures their physiological parameters as well as different environmental values. Measured data are processed in the local device based on stored

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subCULTron

subCULTron: Submarine cultures perform long- term robotic exploration of unconventional environmental niches Project description information from the official web site subCULTron Information from CORDIS The aim of subCULTron project is achieving long-term autonomy in a learning, self-regulating, self-sustaining underwater society/culture of robots in a high-impact application area: Venice, Italy. On the sea-ground, artificial mussels are

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Swarmrobot

Swarmrobot: Open-source micro-robotic project This project is devoted to development of the open-source hardware and software micro-robotic platform in the size of less-then-3cm-cube. The main goal of this project is to develop a cheap, reliable and swarm-capable micro-robot that can be easily reproduced even at home. This robot allows building a large-scale swarm system (100

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Assisi|bf

Assisi|bf: Animal and robot Societies Self-organise and Integrate by Social Interaction Description CORDIS information The aim of ASSISI_bf is to develop (1) a fundamental new class of distributed ICT systems, which are bio-hybrid collective adaptive systems (CASs) that consist of two sub-systems: One is a self-organising society of animals; the other one is a society

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Online measurements

Online measurements S1. Impedance Spectroscope (MU ID=346105), current status: ONLINE data sampling: 10 sec.; available data windows: 1 min, 10 min, 1 hour, 2 hours, 6 hours, 12 hours, 24 hours, 2 days, 3 days available measurement channels: main sensor channels: impedance spectrum ch1, impadance spectrum ch2, differential impedance spectrum; secondary sensor channels: thermostattemperature ch1,

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FloraRobotica

FloraRobotica: Societies of Symbiotic Robot-Plant Bio-Hybrids as Social Architectural Artifacts information from the official web site floraRobotica CONDIS information The project’s objective is to develop and investigate closely linked symbiotic relationships between robots and natural plants and to explore the potentials of a plant-robot society able to produce architectural artifacts and living spaces. flora robotica responds to the work-programme theme ‘Knowing,

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WatchPlant

WatchPlant: SMART BIOHYBRID PHYTO-ORGANISMS FOR ENVIRONMENTAL IN SITU MONITORING Description Project homepage: https://watchplantproject.eu/ CORDIS description Wireless wearable devices can track our every move and monitor our health. This technology can also be used on plants for the benefit of urban policies, the agri-food industry and forestry. The EU-funded WATCHPLANT project will develop a wireless, wearable,

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