This work aims to study and compare different range finders applied to altitude sensing on a rotating wings UAV. The specific application is the altitude maintenance for the fluid deployment valve aperture control in an unmanned pulverization aircraft used in precision agriculture. The influence of a variety of parameters are analyzed, including the tolerance for crop inconsistencies, density variations and intrinsic factors to the process, such as the pulverization fluid interference in the sensor’s readings, as well as their vulnerability to harsh conditions of the operation environment. Filtering and data extraction techniques were applied and analyzed in order to enhance the measurement reliability. As a result, a wide study was performed, enabling better decision making about choosing the most appropriate sensor for each situation under analysis. The performed data analysis was able to provide a reliable baseline to compare the sensors. With a baseline set, it was possible to counterweight the sensors errors and other factors such as the MSE for each environment to provide a summarized score of the sensors. The sensors which provided the best performance in the used metrics and tested environment were Lightware SF11-C and LeddarTech M16.


    Access

    Download


    Export, share and cite



    Title :

    Evaluation of Altitude Sensors for a Crop Spraying Drone




    Publication date :

    2018




    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    Unknown




    HIGH-ALTITUDE DRONE

    JONIOT JAQUES | European Patent Office | 2016

    Free access

    DRONE HAUTE ALTITUDE

    JONIOT JACQUES | European Patent Office | 2017

    Free access

    High-altitude drone

    JONIOT JAQUES | European Patent Office | 2019

    Free access

    Low altitude drone and Crop Cultivating Information Acquisition System including the same

    JEONG HO / KIM DAE SUNG / CHUNG CHUL HOON et al. | European Patent Office | 2020

    Free access

    ALTITUDE ESTIMATOR FOR A DRONE

    BABEL MATHIEU / TEXIER NICOLAS / MARTIN NICOLAS | European Patent Office | 2017

    Free access