1. Balloni, S., Caruso, L., Cerruto, E., Emma, G., Schillaci, G. (2008). A prototype of self-propelled sprayer to reduce operator exposure in greenhouse treatment[C]. In Proceedings on CDROM of the international conference on “innovation technology to empower safety, health and welfare in agriculture and agro-food systems”. Ragusa, Italy.
2. Balsari, P., Oggero, G., Bozzer, C., & Marucco, P. (2012). An autonomous self-propelled sprayer for safer pesticide application in glasshouse. Aspects of Applied Biology, 114, 197–204.
3. Braekman, P., Foque, D., Van Labeke, M., Pieters, J. G., & Nuyttens, D. (2009). Influence of spray application technique on spray deposition in greenhouse ivy pot plants grown on hanging shelves. Hortscience, 44, 1921–1927.
4. Coates, W., & Palumbo, J. (1997). Deposition, off-target movement, and efficacy of capture and Thiodan applied to cantaloupes using five sprayers. Applied Engineering in Agriculture, 13(2), 181–188.
5. Costa, L. L., Aquino, N. C., Carneiro, Â. L., Almeida, D. P., & Ferreira, M. D. C. (2018). Insecticide spraying in soybean plants: Different nozzles models and agrometeorological conditions. Engenharia Agrícola, 38(5), 673–679.