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Optimization of Robotized Tasks for the UV-C Treatment of Diseases in Horticulture

Communication sans acte
Auteur
ccMAZAR, Merouane
SAHNOUN, M'hammed
BETTAYEB, Belgacem
ccKLEMENT, Nathalie
543315 Laboratoire d’Ingénierie des Systèmes Physiques et Numériques [LISPEN]

URI
http://hdl.handle.net/10985/14579
Date
2018

Résumé

Robots are used in several economic fields such as industry, hospitalization and agriculture. This latter, knows a real revolution concerning the robotization of its tasks because of their painfulness and/or dangerousness for humans as well as the desertion of human worker from the agricultural sector. Several research works interested to agricultural robots, aim to optimize plants treatment against diseases [Oberti et al., 2016] and harvesting [Southall et al., 2002] of crops. Recent researches in horticulture reveal that the use of type-C ultraviolet (UV-C) treatment against powdery mildew is a sustainable alternative to chemical treatment. The robotization of UV-C treatment in the horticulture field become a necessity due to the hardness of this kind of treatment manually. A new robot (called UV-Robot) is developed to ensure this treatment, while guaranteeing the safety of the human operator against the UV-C radiation. It is able to perform several levels of UV-C treatments by varying its speed when passing behind plants. The robot is wireless and uses a battery that limits the number of plants treated before it needs to be recharged. The scheduling of UV-Robot tasks represent a real challenge regarding the complexity of the system, the constraint concerning its battery capacity, the procedure of treatment and the dynamic level of diseases.

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Documents liés

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  • Multi-agent Simulation to Predict Global Behavior of Population Based on Elementary Local Markovian model 
    Communication avec acte
    ccMAZAR, Merouane; BETTAYEB, Belgacem; SAHNOUN, M'hammed; LOUIS, Anne; ccKLEMENT, Nathalie (IEEE, 2021)
    New technologies based robotics and data analysis are starting to be used for the treatment of disease in horticulture field. Such autonomous systems evolving in dynamic environment need automatic operation and control ...
  • Simulation and optimization of robotic tasks for UV treatment of diseases in horticulture 
    Article dans une revue avec comité de lecture
    ccMAZAR, Merouane; SAHNOUN, M’hammed; BETTAYEB, Belgacem; LOUIS, Anne; ccKLEMENT, Nathalie (Springer, 2020)
    Robotization is increasingly used in the agriculture since the last few decades. It is progressively replacing the human workforce that is deserting the agricultural sector, partly because of the harshness of its activities ...
  • Dynamic scheduling of robotic mildew treatmentby UV-c in horticulture 
    Communication sans acte
    ccMAZAR, Merouane; BETTAYEB, Belgacem; SAHNOUN, M’hammed; LOUIS, Anne; ccKLEMENT, Nathalie (2020)
    Thanks to new technologies, it is possible to make an automatic robotic treatment of plants for the mildew in greenhouses. The optimization of the scheduling of this robotic treatment presents a real challenge due to the ...
  • UV-Robot supervision system design and development 
    Communication sans acte
    EL ZANT, Chawki; BETTAYEB, Belgacem; SAHNOUN, M'hammed; HAVARD, Vincent; ccKLEMENT, Nathalie (2018)
    Introducing the supervision system architecture of an agricultural robotic system enable the improved performance overcoming the complexity that current autonomous robots face due to the dynamic and unstructured agriculture ...
  • Medical Imaging : Exams Planning and Resource Assignment : Hybridization of a Metaheuristic and a List Algorithm 
    Communication avec acte
    GRANGEON, Nathalie; GOURGAND, Michel; ccKLEMENT, Nathalie (2017)
    The presented work is about optimization of the hospital system. An existing solution is the pooling of resources within the same territory. This may involve different forms of cooperation between several hospitals. Problems ...

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