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Designing a Fertilizing Robot Application Considering Energy Efficiency

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31 août 2024
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Li M., Imou K., Wakabayashi K., Yokoyama S. Review of research on agricultural vehicle autonomous guidance. Int J Agric & Biol Eng 2009:2(3). Search in Google Scholar

Zhao J., Yang Y., Zheng H., Dong Y. Global Agricultural Robotics Research and Development: Trend Forecasts. Journal of Physics: Conference Series 2020:1693:012227. https://doi.org/10.1088/1742-6596/1693/1/012227 Search in Google Scholar

Hajjaj S. S. H., Sahari K. S. M. Review of Research in the Area of Agriculture. Lecture Notes in Electrical Engineering. Springer, Singapore 2014:291:107–117. https://doi.org/10.1007/978-981-4585-42-2_13 Search in Google Scholar

Bechar A., Vigneault C. Agricultural robots for field operations: Concepts and components. Biosystems Engineering 2016:149:94–111. https://doi.org/10.1016/j.biosystemseng.2016.06.014 Search in Google Scholar

Bechar A., Vigneault C. Agricultural robots for field operations: part 2: Operation and systems. Biosystems Engineering 2017:153:110–128. https://doi.org/10.1016/j.biosystemseng.2016.11.004 Search in Google Scholar

Aravind K. R., Raja P., Perez-Ruiz M. Task-based agricultural mobile robots in arable farming: A review. Spanish Journal of Agricultural Research 2017:15(1):e02R01. https://doi.org/10.5424/sjar/2017151-9573 Search in Google Scholar

Marinoudi V., Sørensen C. G., Pearson S., Bochtis D. Robotics and labour in agriculture. A context consideration. Biosystems Engineering 2019:184:111–121. https://doi.org/10.1016/j.biosystemseng.2019.06.013 Search in Google Scholar

Kägo R., Vellak P., Ehrpais H., Noorma M., Olt J. Assessment of power characteristics of unmanned tractor for operations on peat fields. Agronomy Research 2022:20(2):261–274. https://doi.org/10.15159/AR.22.001 Search in Google Scholar

Green O., Schmidt T., Pietrzkowski R. P., Jensen K., Larsen M., Nyholm Jørgensen R. H. A. Commercial Autonomous Agricultural Platform – Kongskilde Robotti. In: Proceedings of the Second International Conference on Robotics, Associated High-Technologies and Equipment for Agriculture and Forestry RHEA 2014. New trends in mobile robotics, perception and actuation for agriculture and forestry 2014:351–356. Search in Google Scholar

Mitkov I., Harizanov V., Komitov G. Determining the energy efficiency of an agrorobot. Agricultural Sciences 2021:13(30):73–78. https://doi.org/10.22620/agrisci.2021.30.010 Search in Google Scholar

Valdmanis G., Rieksta M., Luksta I. Solar energy based charging for electric vehicles at fuel stations. Environmental and Climate Technologies 2022:26(1):1169–1181. https://doi.org/10.2478/rtuect-2022-0088 Search in Google Scholar

Candra O., Chammam A., Rahardja U., Ramirez-Coronel A., Al-Jaleel A., Al-Kharsan I. H., Muda I., Derakhshani G., Rezai M. M. Optimal Participation of the Renewable Energy in Microgrids with Load Management Strategy. Environmental and Climate Technologies 2023:27(1):56–66. https://doi.org/10.2478/rtuect-2023-0005 Search in Google Scholar

Abdel Hamid R. H., Elidrissi Y., Elsamahy A., Regragui M., Menoufi K. Examining the Impact of Different Technical and Environmental Parameters on the Performance of Photovoltaic Modules. Environmental and Climate Technologies 2023:27(1):56–66. https://doi.org/10.2478/rtuect-2021-0001 Search in Google Scholar

Virro I., Arak M., Maksarov V., Olt J. Precision fertilisation technologies for berry plantation. Agronomy Research 2020:18(S4):2797–2810. https://doi.org/10.15159/AR.20.207 Search in Google Scholar

Arak M., Olt J. Technological description for automating the cultivation of blueberries in blueberry plantations established on depleted peat milling fields. Proceedings of the 9th Int. Sci. Conference Rural Development. Research and Innovation for Bioeconomy 2019. https://doi.org/10.15544/RD.2019.024 Search in Google Scholar

Queiroz D. M., Schuller J. K. Traction. In: Holden N. M., Wolfe M. L., Ogejo J. A., Cummins E. J. (Ed). Introduction to Biosystems Engineering 2020. https://doi.org/10.21061/IntroBiosystemsEngineering/Traction Search in Google Scholar

Bulgakov V., Olt J., Kuvachov V., Smolinsky S. A theoretical and experimental study of the traction properties of agricultural gantry systems. Journal of Agricultural Science 2020:31(1):10–16. https://doi.org/10.15159/jas.20.08 Search in Google Scholar

Rahman A., Yahya A., Mohiuddin A. K. M. Tractive Performance of LGP-30 Wheeled Vehicle During Straight Motion on Sepang Peat Terrain in Malaysia. The Open Transportation Journal 2009:3(1):15–28. https://doi.org/10.2174/1874447800903010015 Search in Google Scholar

Kurkauskas V., Janulevicius A., Pupinis G. Influence of inflation pressure in tires on traction ratio 2WD and 4WD driving modes of tractor. Engineering of Rural Development 2016:448–455. Search in Google Scholar

Arak M., Olt J. Technological description for automating the cultivation of blueberries in blueberry plantations established on depleted peat milling fields. Proceedings of the 9th Int. Sci. Conference Rural Development. Research and Innovation for Bioeconomy 2019:6. https://doi.org/10.15544/RD.2019.024 Search in Google Scholar

Kacare M., Pakere I., Grāvelsiņš A., Blumberga D. Spatial Analysis of Renewable Energy Sources. Environmental and Climate Technologies 2021:25(1):865–878. https://doi.org/10.2478/rtuect-2021-0065 Search in Google Scholar

Langue:
Anglais
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2 fois par an
Sujets de la revue:
Sciences de la vie, Sciences de la vie, autres