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PolliDrone: Smart Drone for Precision Pollination of Date Palms

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dc.contributor.author Belaid, Younes
dc.contributor.author Moussalmal, Youcef
dc.contributor.author HACENE, Nacer/encadreur
dc.date.accessioned 2026-01-26T19:34:58Z
dc.date.available 2026-01-26T19:34:58Z
dc.date.issued 2025
dc.identifier.uri https://dspace.univ-ghardaia.edu.dz/xmlui/handle/123456789/10432
dc.description.abstract This thesis presents the development of an autonomous quadcopter designed specifically for date- palm pollination. The work integrates a complete nonlinear dynamic model, a cascaded control architecture for stable low-speed flight, and a lightweight autonomous navigation strategy adapted to irregular oasis environments. A YOLOv8-based perception system enables real-time detection of palm flowers, while a custom hardware platform—combining an ESP32 flight controller, Raspberry Pi Zero 2 W, and a pollen pump—forms the operational prototype. Simulation and preliminary experimental results show that the proposed system can achieve precise hovering, reliable flower detection, and safe maneuvering near palm crowns. The findings demonstrate the technical feasibility of UAV-based pollination and highlight its potential to reduce labor demands, improve safety, and enhance consistency in date-palm agriculture. EN_en
dc.language.iso en EN_en
dc.publisher university of Ghardaïa EN_en
dc.subject Autonomous Quadcopter, Date-Palm Pollination, YOLOv8 Perception, PID Control, Autonomous Navigation EN_en
dc.title PolliDrone: Smart Drone for Precision Pollination of Date Palms EN_en
dc.type Thesis EN_en


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