Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoT

Indonesia is a tropical country that is gifted with various kinds of abundant natural resources. Among them are exotic fruits which are in great demand by other people in the world. Meanwhile, in the delivery and storage process for distribution, technology that can maintain the resilience of the fr...

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Bibliographic Details
Main Authors: Alam Baheramsyah, Khitoh Fatahilah
Format: Article
Language:English
Published: Institut Teknologi Sepuluh Nopember 2021-06-01
Series:International Journal of Marine Engineering Innovation and Research
Subjects:
iot
Online Access:https://iptek.its.ac.id/index.php/ijmeir/article/view/8887
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spelling doaj-b03b5083b91f4269be6fa6286800dace2021-08-22T11:27:43ZengInstitut Teknologi Sepuluh NopemberInternational Journal of Marine Engineering Innovation and Research2541-59722548-14792021-06-016213513910.12962/j25481479.v6i2.8887Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoTAlam Baheramsyah0Khitoh Fatahilah1Department of Marine Engineering, Institut Teknologi Sepuluh Nopember, Surabaya 60111, IndonesiaDepartment of Marine Engineering, Institut Teknologi Sepuluh Nopember, Surabaya 60111, IndonesiaIndonesia is a tropical country that is gifted with various kinds of abundant natural resources. Among them are exotic fruits which are in great demand by other people in the world. Meanwhile, in the delivery and storage process for distribution, technology that can maintain the resilience of the fruit is needed so that it does not ripen quickly, thereby increasing its economic value. From this problem, a device called Controlled Atmosphere Storage (CAS) was created which could store fruit and adjust its room conditions according to the specific air requirements of each commodity in the container. The control system design in this study aims to determine how to regulate the levels of ethylene, oxygen, carbon dioxide, and temperature by using the Arduino Uno as a microcontroller and integrating it with the IoT system. The system consists of a microcontroller, DHT22 sensor, MQ 135 sensor, MQ5 sensor, KE25 sensor, relay, Esp8266, and actuators such as fans and servo. From the experimental results, it is known that the control system used is capable of conducting air conditioning in the container and can integrate it with the IoT concept using Thingspeak.com media.https://iptek.its.ac.id/index.php/ijmeir/article/view/8887⎯ casiotmicrocontrollerthingspeak
collection DOAJ
language English
format Article
sources DOAJ
author Alam Baheramsyah
Khitoh Fatahilah
spellingShingle Alam Baheramsyah
Khitoh Fatahilah
Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoT
International Journal of Marine Engineering Innovation and Research
⎯ cas
iot
microcontroller
thingspeak
author_facet Alam Baheramsyah
Khitoh Fatahilah
author_sort Alam Baheramsyah
title Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoT
title_short Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoT
title_full Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoT
title_fullStr Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoT
title_full_unstemmed Automatic Monitoring and Controlled Atmosphere System Using Arduino on Tropical Fruit Container Integrated with IoT
title_sort automatic monitoring and controlled atmosphere system using arduino on tropical fruit container integrated with iot
publisher Institut Teknologi Sepuluh Nopember
series International Journal of Marine Engineering Innovation and Research
issn 2541-5972
2548-1479
publishDate 2021-06-01
description Indonesia is a tropical country that is gifted with various kinds of abundant natural resources. Among them are exotic fruits which are in great demand by other people in the world. Meanwhile, in the delivery and storage process for distribution, technology that can maintain the resilience of the fruit is needed so that it does not ripen quickly, thereby increasing its economic value. From this problem, a device called Controlled Atmosphere Storage (CAS) was created which could store fruit and adjust its room conditions according to the specific air requirements of each commodity in the container. The control system design in this study aims to determine how to regulate the levels of ethylene, oxygen, carbon dioxide, and temperature by using the Arduino Uno as a microcontroller and integrating it with the IoT system. The system consists of a microcontroller, DHT22 sensor, MQ 135 sensor, MQ5 sensor, KE25 sensor, relay, Esp8266, and actuators such as fans and servo. From the experimental results, it is known that the control system used is capable of conducting air conditioning in the container and can integrate it with the IoT concept using Thingspeak.com media.
topic ⎯ cas
iot
microcontroller
thingspeak
url https://iptek.its.ac.id/index.php/ijmeir/article/view/8887
work_keys_str_mv AT alambaheramsyah automaticmonitoringandcontrolledatmospheresystemusingarduinoontropicalfruitcontainerintegratedwithiot
AT khitohfatahilah automaticmonitoringandcontrolledatmospheresystemusingarduinoontropicalfruitcontainerintegratedwithiot
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