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  <doi_batch_id>aspg-21-1373-1791472224</doi_batch_id>
  <timestamp>20261008151024</timestamp>
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   <depositor_name>American Scientific Publishing Group</depositor_name>
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  <journal>
   <journal_metadata language="en">
    <full_title>International Journal of Neutrosophic Science</full_title>
    <abbrev_title>IJNS</abbrev_title>
    <issn media_type="print">2692-6148</issn>
    <issn media_type="electronic">2690-6805</issn>
   </journal_metadata>
   <journal_issue>
    <publication_date media_type="online">
     <year>2022</year>
    </publication_date>
    <journal_volume>
     <volume>19</volume>
    </journal_volume>
    <issue>3</issue>
   </journal_issue>
   <journal_article publication_type="full_text">
    <titles>
     <title>Redesign of a drone (UAV) to obtain high flight autonomy, used in the analysis of Pitahaya crops based on neutrosophic control</title>
    </titles>
    <contributors>
     <person_name sequence="first" contributor_role="author">
      <given_name>Pedro M.</given_name>
      <surname>García</surname>
      <affiliations>
       <institution>
        <institution_name>Facultad de Ciencias Matemáticas y Físicas, Universidad de Guayaquil, Ecuador</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Gilberto F.</given_name>
      <surname>Castro</surname>
      <affiliations>
       <institution>
        <institution_name>Facultad de Ingenierìa - Computación, Universidad Católica de Santiago de Guayaquil, Ecuador; Facultad de Ciencias Matemáticas y Físicas, Universidad de Guayaquil, Ecuador</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Inelda A.</given_name>
      <surname>Martillo</surname>
      <affiliations>
       <institution>
        <institution_name>Facultad de Ciencias Matemáticas y Físicas, Universidad de Guayaquil, Ecuador</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Maikel Y. L.</given_name>
      <surname>Vázquez</surname>
      <affiliations>
       <institution>
        <institution_name>Universidad Regional Autonoma de los Andes, Ecuador</institution_name>
       </institution>
      </affiliations>
     </person_name>
    </contributors>
    <jats:abstract>
     <jats:p>The use of &quot;drones&quot; stands out in precision agriculture for the analysis of vegetation and soil indices, the present work contemplates a redesign, construction and implementation of a &quot;drone&quot; using computer tools based on software engineering and technologies of info-communications, which allows optimizing one of the existing platforms in the drone market (SKYWALKER (X8)) for the evaluation of vegetation indices, as estimators of changes in different types of vegetation cover in Pitahaya crops in the province del Guayas, also carry out precise monitoring of large extensions of crops, minimizing human presence, controlling soil conditions through special systems, such as hydration, temperature or plant growth rate, chlorophyll level, among others, and the appearance of plagues that could affect the Pitahaya crops located prematurely, as well as the bases for a neutrosophic control system in designing platforms by using simulators. For the neutrosophic control, neutrosophic uninorms were used for the aggregation of the measurement results by regions.</jats:p>
    </jats:abstract>
    <publication_date media_type="online">
     <year>2022</year>
    </publication_date>
    <pages>
     <first_page>53</first_page>
     <last_page>62</last_page>
    </pages>
    <publisher_item>
     <item_number item_number_type="article-number">1373</item_number>
    </publisher_item>
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     <ai:license_ref applies_to="vor">https://creativecommons.org/licenses/by/4.0/</ai:license_ref>
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    <doi_data>
     <doi>10.54216/IJNS.190306</doi>
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