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    This project proposes implementation of precision agriculture technologies and methods in the beekeeping. Precision agriculture approach is adapted for beekeeping based on the various measurements of individual bee colonies all year around thus detecting different states of colonies and apiaries enabling rapid reaction by the beekeeper in case of necessity. Digital measurements such as temperature, humidity, audio and video can be used to detect several states of a bee colony: swarming, broodless stage, brood rearing, illness.

    Latvia
    • Animal Production and Health

    This project proposes implementation of precision agriculture technologies and methods in the beekeeping. Precision agriculture approach is adapted for beekeeping based on the various measurements of individual bee colonies all year around thus detecting different states of colonies and apiaries enabling rapid reaction by the beekeeper in case of necessity. Digital measurements such as temperature, humidity, audio and video can be used to detect several states of a bee colony: swarming, broodless stage, brood rearing, illness.

    Latvia
    • Animal Production and Health

    The aim of this project is to demonstrate the advantages of a generic data platform. By means of case studies, we will showcase how existing sensor prototypes can be combined with additional on farm (sensor) data, to build new applications and improve decision support systems. The first case study will focus on grassland based production systems. Grassland based production systems often offer a possibility to use marginal land in LFAs (Less Favoured Area) that could otherwise not be used. The second case study will focus on behavioural monitoring.

    Switzerland
    • Animal Production and Health

    The aim of this project is to demonstrate the advantages of a generic data platform. By means of case studies, we will showcase how existing sensor prototypes can be combined with additional on farm (sensor) data, to build new applications and improve decision support systems. The first case study will focus on grassland based production systems. Grassland based production systems often offer a possibility to use marginal land in LFAs (Less Favoured Area) that could otherwise not be used. The second case study will focus on behavioural monitoring.

    Switzerland
    • Animal Production and Health

    Project is targeting to implement a pilot project to increase animal production and accelerate rural socio-economic development by precision (low input & reduced traffic) fertilization of irregular sloped mountainous pastures by using ICT and automation. Project will create a platform that integrates and harmonizes existing software and hardware technologies into a single system for pasture management.

    Turkey
    • Animal Production and Health

    Project is targeting to implement a pilot project to increase animal production and accelerate rural socio-economic development by precision (low input & reduced traffic) fertilization of irregular sloped mountainous pastures by using ICT and automation. Project will create a platform that integrates and harmonizes existing software and hardware technologies into a single system for pasture management.

    Turkey
    • Animal Production and Health

    This aim of IMAGE is to enhance the use of genetic collections and to upgrade animal gene bank management. IMAGE will better exploit DNA information and develop methodologies, biotechnologies, and bioinformatics for rationalising animal genetic resources.

    France
    • Animal Production and Health

    This aim of IMAGE is to enhance the use of genetic collections and to upgrade animal gene bank management. IMAGE will better exploit DNA information and develop methodologies, biotechnologies, and bioinformatics for rationalising animal genetic resources.

    France
    • Animal Production and Health