In a context of growing agricultural demand and new challenges related to food security and accessibility, boosting agricultural productivity is more important than ever. Reducing the damage caused by invasive insect species is a crucial lever to achieve this objective. In support of these challenges, and in line with the principles of precision agriculture and Integrated Pest Management (IPM), an innovative simulation framework is presented, aiming to become the Digital Twin of a pest invasion. Through a flexible rule-based approach of the Agent-Based Modeling (ABM) paradigm, the framework supports the fine-tuning of the main ecological interactions of the pest with its crop host and the environment. Forecasting insect infestation in realistic scenarios, considering both spatial and temporal dimensions, is made possible by integrating heterogeneous data sources: pest biodata collected in the laboratory, environmental data from weather stations, and GIS data of a real crop field. In this study, an application to the global pest of soft fruit, the invasive fruit fly Drosophila suzukii, also known as Spotted Wing Drosophila (SWD), is presented.

PesTwin: a biology-informed Digital Twin for enabling precision farming / De Antoni, A., Rucco, M., Cattaneo, A.M., Gezer, E., Sulis, G., Draicchio, P., Iacca, G., Pugliese, A., Mancini, M.V.. - (2026), pp. 195-200. (5th IEEE International Workshop on Smart Agriculture (SmartAgr 2026) Messina 22nd June-25th June 2026) [10.1109/smartcomp-companion70724.2026.00050].

PesTwin: a biology-informed Digital Twin for enabling precision farming

De Antoni, Andrea;Cattaneo, Alberto Maria;Iacca, Giovanni;Pugliese, Andrea;
2026-01-01

Abstract

In a context of growing agricultural demand and new challenges related to food security and accessibility, boosting agricultural productivity is more important than ever. Reducing the damage caused by invasive insect species is a crucial lever to achieve this objective. In support of these challenges, and in line with the principles of precision agriculture and Integrated Pest Management (IPM), an innovative simulation framework is presented, aiming to become the Digital Twin of a pest invasion. Through a flexible rule-based approach of the Agent-Based Modeling (ABM) paradigm, the framework supports the fine-tuning of the main ecological interactions of the pest with its crop host and the environment. Forecasting insect infestation in realistic scenarios, considering both spatial and temporal dimensions, is made possible by integrating heterogeneous data sources: pest biodata collected in the laboratory, environmental data from weather stations, and GIS data of a real crop field. In this study, an application to the global pest of soft fruit, the invasive fruit fly Drosophila suzukii, also known as Spotted Wing Drosophila (SWD), is presented.
2026
2026 IEEE International Conference on Smart Computing Workshops and Other Affiliated events (SmartComp Companion)
New York, NY, USA
IEEE
979-8-3195-4416-2
De Antoni, Andrea; Rucco, Matteo; Cattaneo, Alberto Maria; Gezer, Ege; Sulis, Giuseppe; Draicchio, Paola; Iacca, Giovanni; Pugliese, Andrea; Mancini, ...espandi
PesTwin: a biology-informed Digital Twin for enabling precision farming / De Antoni, A., Rucco, M., Cattaneo, A.M., Gezer, E., Sulis, G., Draicchio, P., Iacca, G., Pugliese, A., Mancini, M.V.. - (2026), pp. 195-200. (5th IEEE International Workshop on Smart Agriculture (SmartAgr 2026) Messina 22nd June-25th June 2026) [10.1109/smartcomp-companion70724.2026.00050].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/497330
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