ENTRAP · Energy Harvesting for Precision Agriculture Applications
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2019-07-01 → 2022-06-30
- EU contribution
- €304,021
- Participants
- 1
- Scheme
- MSCA-IF
Lines connect the coordinator with its partners.
Results in brief
Energy Harvesting for Precision Agriculture Applications
Energy harvesting in precision agriculture applications (ENTRAP) was a Marie Skłodowska Curie Action individual fellowship awarded to David Blažević and Tampere University. The aim was to develop a small wearable device which can convert the natural motion of farm animals into electrical power. In the precision agriculture management concept, or more specifically precision livestock farming, smart wearable devices are being used to manage livestock production. Farm animals can be equipped with special smart collars, leg straps or ear tags with embedded health or wellbeing monitoring sensors (temperature, disease, geolocation etc.). These smart wearables report the animal’s health status or location wirelessly to the farmer. Millions of smart farming devices are being marketed today in the EU and all are powered with batteries with limited capacity (finite lifetime batteries). Battery manufacturing is known to be unsustainable and a toxic polluting practice with low recycling rates which produces negative effects on the ecosystem. Thus, the goal of project ENTRAP was to replace batteries in these wearable devices with a small electromechanical generator. The generators use a moving permanent magnet mechanism which reacts to simple animal movement like a cow’s step or ear flap and – based on Faraday’s principle of electromagnetic induction– converts that kinetic energy into electrical energy by inducing voltage in a coil. To design such a generator animal locomotion was first measured and analyzed and then a numerical model was developed which could take recorded animal movement as an input. Computer simulations were performed and based on the results, laboratory prototypes were built and tested on field with free grazing cattle. The conclusive result of action ENTRAP is that certain low power smart farming devices could be completely powered by animal locomotion. For more energy intensive applications, like virtual fencing, significant increases in battery lifetimes could be achieved. The action has also shown that these generators could be made cheap, reliable, and easily integrated with existing smart farming devices.
Data: CORDIS, © European Union
Project objective
ENTRAP is multidisciplinary research project aimed at developing an Energy Harvesting (EH) device which will convert the locomotion of domestic animals, i.e. animal kinetic energy, into electrical power. This device would then supply autonomous power to a wide range of wireless sensing Precision Agriculture applications. Precision Livestock Farming is used to monitor individual animals' health, behavior, location and more so as to increase the efficiency and sustainability of food production. Millions of battery powered smart collar devices used in Precision Livestock Farming are being marketed today in the EU and through ENTRAP these devices will become powered by the animals themselves. In fact, the locomotion of domestic animals hasn't been characterized as a power source at all and to develop an EH device designed specifically for free grazing animals, extensive field experiments are necessary. Experiments are designed in cooperation with the Faculties of Agriculture in Zagreb and Helsinki, and will be performed at their respective experimental farms. The host beneficiary, Tampere University of Technology, is providing supervision in electromagnetic EH device design through mentorship by asst. prof. Paavo Rasilo, an expert in modeling of electromechanical systems. To enhance the projects prospects of success and to gain knowledge necessary for the development of my future career I will be seconded to an industry leader in the EH field, ReVibe Energy(SWE). The device will be integrated at Nofence(NOR), the world's first producer of a cloud based Virtual Fencing system (a Precision Livestock Farming application). The motivation for the restart of my career arose from an academic break and subsequent 6 months spent as a goat herder which allowed for this novel research idea to develop based on my previous research in the EH field. Through the implementation of this project I will have restarted my career with a fresh incentive and thus far unperformed research.
Original text from CORDIS.
Participants
- TAMPEREEN KORKEAKOULUSAATIO SR · TampereCoordinatorFinland
Links
Data: CORDIS, © European Union
