INFORMAZIONI SU QUESTO ARTICOLO

Cita

[1] Sylvester, G., E-Agriculture in action: drones for agriculture, Food and Agriculture Organization of the United Nations and International Telecommunication Union, Bangkok, 2018. Search in Google Scholar

[2] Radoglou-Grammatikis, P., Sarigiannidis, P., Lagkas, T., Moscholios, I., A compilation of UAV applications for precision agriculture, Computer Networks, 172, 107148, 2020.10.1016/j.comnet.2020.107148 Search in Google Scholar

[3] Matese, A., Toscano, P., Di Gennaro, S.F., Genesio, L., Vaccari, F.P., Primicerio, J., Belli, C., Zaldei, A., Bianconi, R., Gioli, B., Intercomparison of uav, aircraft and satellite re - mote sensing platforms for precision viticulture, Remote Sens (Basel), 7(3), 2971–2990, 2015.10.3390/rs70302971 Search in Google Scholar

[4] Austin, R., Unmanned aircraft systems: UAVS design, development and deployment, 54, John Wiley & Sons, 2011.10.1002/9780470664797 Search in Google Scholar

[5] Mihai, D., Sârbu, N. D., Mudura, R., GIS for precision farming –senzor monitoring at “Moara Domneasca” Farm, UASVM of Bucharest, 2019. Search in Google Scholar

[6] Huang, Y., Thomson, S. J., Hoffmann, W. C., Lan, Y., Fritz, B. K., Development and prospect of unmanned aerial vehicle technologies for agricultural production management, Int. J. Agricult. Biol. Eng., 6(3), 1–10, 2013. Search in Google Scholar

[7] Muchiri, N., Kimathi, S., A review of applications and potential applications of UAV, Proc. Sustain. Res. Innov. Conf., 280–283, 2016. Search in Google Scholar

[8] Hunt, E. R., Hively, W. D., Fujikawa, S. J., Linden, D. S., Daughtry, C. S. T. McCarty, G. W., Acquisition of NIR-green-blue digital photographs from unmanned aircraft for crop monitoring, Remote Sens., 2(1), 290–305, 2010.10.3390/rs2010290 Search in Google Scholar

[9] Sullivan, D. G., Fulton, J. P., Shaw, J. N., Bland, G., Evaluating the sensitivity of an unmanned thermal infrared aerial system to detect water stress in a cotton canopy, Trans. ASABE, 50(6), 1963–1969, 2007.10.13031/2013.24091 Search in Google Scholar

[10] Swain, K. C., Thomson, S. J., Jayasuriya, H. P. W., Adoption of an unmanned helicopter for low-altitude remote sensing to estimate yield and total biomass of a rice crop, Trans. ASABE, 53(1), 21–27, 2010.10.13031/2013.29493 Search in Google Scholar

[11] Geipel, J., Link, J., Claupein, W., Combined spectral and spatial modeling of corn yield based on aerial images and crop surface models acquired with an unmanned aircraft system, Remote Sens., 6(11), 10335–10355, 2014.10.3390/rs61110335 Search in Google Scholar

[12] Sankaran, S., Khot, L.R., Espinoza, C.Z., Jarolmasjed, S., Sathuvalli, V.R., Vandemark, G.J., Miklas, P.N., Carter, A.H., Pumphrey, M.O., Knowles, N.R., Pavek, M.J., Low - altitude, high-resolution aerial imaging systems for row and field crop phenotyping: A review, Eur. J. Agronomy, 70, 112–123, 2015.10.1016/j.eja.2015.07.004 Search in Google Scholar

[13] Myneni, R.B., Williams, D.L., On the relationship between FAPAR and NDVI, Remote Sens. Environ., 49, 200–211, 1994.10.1016/0034-4257(94)90016-7 Search in Google Scholar

[14] North, P.R.J., Estimation of fAPAR, LAI, and vegetation fractional cover from ATSR -2 imagery, Remote Sens. Environ., 80, 114–121, 2002.10.1016/S0034-4257(01)00292-9 Search in Google Scholar

[15] Pettorelli, N., Vik, J.O., Mysterud, A., Gaillard, J.M., Tucker, C.J., Stenseth, N.C., Using the satellite-derived NDVI to assess ecological responses to environmental change, Trends in Ecology & Evolution, 20, 503–510, 2005.10.1016/j.tree.2005.05.01116701427 Search in Google Scholar

[16] Saunders, M., Lewis, P. and Thornhill, A., Research methods for business students, Harlow, Munich, Pearson, 2016. Search in Google Scholar

[17] Whelan, B.M., McBratney, A.B., The “null hypothesis “of precision agriculture man - agement, Precis. Agric., 2 (3), 265–279, 2000.10.1023/A:1011838806489 Search in Google Scholar

[18] Iagăru, P, Mărcuță, L, Iagăru, R, Mărcuță, A., Sustainable resource management, the source of production integration, biodiversity conservation and socio -cultural values in grasway ecosystems, Rom Biotechnol Lett., 25(5), 1984-1991, 2020.10.25083/rbl/25.5/1984.1991 Search in Google Scholar

[19] Iagăru, P., Pavel, P., Iagăru, R., Implementation of the concept Agriculture of Precision a way to improve the Management of Agricultural Enterprises. Scientific Papers Series - Management, Economic Engineering in Agriculture and Rural Development, 19(1), 229 - 233, 2019.results, and therefore the machines got their remarkable place in the history of computer science. Search in Google Scholar