Development of a cooling system for tomato using fuzzy logic approach

Climate change has great impact in the production of crops worldwide. With the advent of technology, several methods have been developed to adapt to an ever changing world climate. One of these is to provide a microclimate technology that can provide an environment suitable for the growth and develo...

Full description

Saved in:
Bibliographic Details
Main Authors: Magsumbol, Jo Ann V., Cagatan, Gerard Kevin B., Gan Lim, Laurence, Dadios, Elmer P.
Format: text
Published: Animo Repository 2017
Subjects:
Online Access:https://animorepository.dlsu.edu.ph/faculty_research/3028
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: De La Salle University
id oai:animorepository.dlsu.edu.ph:faculty_research-4027
record_format eprints
spelling oai:animorepository.dlsu.edu.ph:faculty_research-40272021-11-22T01:20:31Z Development of a cooling system for tomato using fuzzy logic approach Magsumbol, Jo Ann V. Cagatan, Gerard Kevin B. Gan Lim, Laurence Dadios, Elmer P. Climate change has great impact in the production of crops worldwide. With the advent of technology, several methods have been developed to adapt to an ever changing world climate. One of these is to provide a microclimate technology that can provide an environment suitable for the growth and development of a plant. Among the growth factors affected by the climate change, temperature plays a very vital role in growing tomato plant and can be controlled through different cooling methods. A temperature which is greater or less than the necessary range for the tomato plant will either lead to immature fruit or loss of flowers. The focus of this research is to monitor and control the temperature inside a growth chamber environment for growing a tomato plant. The input parameters that will be used to monitor and control microclimatic conditions include crop age of the tomato plant, time of the day, and air temperature. Temperature inside the growth chamber will be compared to the temperature outside the growth chamber, as well as to the optimum temperature for the growth stage of the tomato plant. Based on these parameters, fuzzy logic system will be used to make decisions to control the temperature setting of the air-condition unit inside the chamber. © 2017 IEEE. 2017-07-02T07:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/3028 Faculty Research Work Animo Repository Cooling systems Growth cabinets and rooms Tomatoes—Growth Fuzzy logic Temperature control Mechanical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Cooling systems
Growth cabinets and rooms
Tomatoes—Growth
Fuzzy logic
Temperature control
Mechanical Engineering
spellingShingle Cooling systems
Growth cabinets and rooms
Tomatoes—Growth
Fuzzy logic
Temperature control
Mechanical Engineering
Magsumbol, Jo Ann V.
Cagatan, Gerard Kevin B.
Gan Lim, Laurence
Dadios, Elmer P.
Development of a cooling system for tomato using fuzzy logic approach
description Climate change has great impact in the production of crops worldwide. With the advent of technology, several methods have been developed to adapt to an ever changing world climate. One of these is to provide a microclimate technology that can provide an environment suitable for the growth and development of a plant. Among the growth factors affected by the climate change, temperature plays a very vital role in growing tomato plant and can be controlled through different cooling methods. A temperature which is greater or less than the necessary range for the tomato plant will either lead to immature fruit or loss of flowers. The focus of this research is to monitor and control the temperature inside a growth chamber environment for growing a tomato plant. The input parameters that will be used to monitor and control microclimatic conditions include crop age of the tomato plant, time of the day, and air temperature. Temperature inside the growth chamber will be compared to the temperature outside the growth chamber, as well as to the optimum temperature for the growth stage of the tomato plant. Based on these parameters, fuzzy logic system will be used to make decisions to control the temperature setting of the air-condition unit inside the chamber. © 2017 IEEE.
format text
author Magsumbol, Jo Ann V.
Cagatan, Gerard Kevin B.
Gan Lim, Laurence
Dadios, Elmer P.
author_facet Magsumbol, Jo Ann V.
Cagatan, Gerard Kevin B.
Gan Lim, Laurence
Dadios, Elmer P.
author_sort Magsumbol, Jo Ann V.
title Development of a cooling system for tomato using fuzzy logic approach
title_short Development of a cooling system for tomato using fuzzy logic approach
title_full Development of a cooling system for tomato using fuzzy logic approach
title_fullStr Development of a cooling system for tomato using fuzzy logic approach
title_full_unstemmed Development of a cooling system for tomato using fuzzy logic approach
title_sort development of a cooling system for tomato using fuzzy logic approach
publisher Animo Repository
publishDate 2017
url https://animorepository.dlsu.edu.ph/faculty_research/3028
_version_ 1718383341718208512