Comparative Analysis of PID and Fuzzy Temperature Control System on Infant Warmer

Infant Warmer is a life support equipment that is used to provide heat relief for normal and premature babies who are unable to maintain their own body temperature when in a new environment. The purpose of this research is to design an infant warmer using the DS18B20 sensor to analyze the efficiency...

Full description

Bibliographic Details
Main Authors: Abdul Majid, Endang Dian Setioningsih, Abd Kholiq, Singgih Yudha Setiawan, Anilkumar Suthar
Format: Article
Language:English
Published: Poltekkes Kemenkes Surabaya 2022-10-01
Series:Journal of Electronics, Electromedical Engineering, and Medical Informatics
Subjects:
Online Access:http://jeeemi.org/index.php/jeeemi/article/view/257
_version_ 1797984836569268224
author Abdul Majid
Endang Dian Setioningsih
Abd Kholiq
Singgih Yudha Setiawan
Anilkumar Suthar
author_facet Abdul Majid
Endang Dian Setioningsih
Abd Kholiq
Singgih Yudha Setiawan
Anilkumar Suthar
author_sort Abdul Majid
collection DOAJ
description Infant Warmer is a life support equipment that is used to provide heat relief for normal and premature babies who are unable to maintain their own body temperature when in a new environment. The purpose of this research is to design an infant warmer using the DS18B20 sensor to analyze the efficiency and effectiveness between PID and fuzzy temperature control. This study used temperature settings of 34 °C, 35 °C, and 36 °C. The tool used for reference from standard measurements uses a standard infant warmer. When using the PID control used in the microcontroller detects the set temperature difference value with the actual temperature, the difference in value will be input to the PID control. The error value becomes PWM input on the PID control, the PID control will process the error value and determine the output value for the heater, the temperature sensor will read the actual temperature value which will be compared again with the temperature setting, the PID control will continue to process the error value and determine the PWM output value. until the actual temperature is equal to the setting temperature or the error value is zero
first_indexed 2024-04-11T07:08:00Z
format Article
id doaj.art-96f26f143ade4e0a99d3f6f5243b1d65
institution Directory Open Access Journal
issn 2656-8632
language English
last_indexed 2024-04-11T07:08:00Z
publishDate 2022-10-01
publisher Poltekkes Kemenkes Surabaya
record_format Article
series Journal of Electronics, Electromedical Engineering, and Medical Informatics
spelling doaj.art-96f26f143ade4e0a99d3f6f5243b1d652022-12-22T04:38:17ZengPoltekkes Kemenkes SurabayaJournal of Electronics, Electromedical Engineering, and Medical Informatics2656-86322022-10-0144223–228223–22810.35882/jeeemi.v4i4.257257Comparative Analysis of PID and Fuzzy Temperature Control System on Infant WarmerAbdul Majid0Endang Dian Setioningsih1Abd Kholiq2Singgih Yudha Setiawan3Anilkumar Suthar4Department of Medical Electronics Technology, Poltekkes Kemenkes SurabayaDepartment of Electromedical Engieenering, Poltekkes Kemenkes SurabayaDepartment of Medical Electronics Technology, Poltekkes Kemenkes SurabayaDepartment of Medical Electronics Technology, Poltekkes Kemenkes SurabayaNew LJ Institute of Engineering and Technology, Gujarat Technological University, S.G. Highway, Ahmedabad, Gujarat, IndiaInfant Warmer is a life support equipment that is used to provide heat relief for normal and premature babies who are unable to maintain their own body temperature when in a new environment. The purpose of this research is to design an infant warmer using the DS18B20 sensor to analyze the efficiency and effectiveness between PID and fuzzy temperature control. This study used temperature settings of 34 °C, 35 °C, and 36 °C. The tool used for reference from standard measurements uses a standard infant warmer. When using the PID control used in the microcontroller detects the set temperature difference value with the actual temperature, the difference in value will be input to the PID control. The error value becomes PWM input on the PID control, the PID control will process the error value and determine the output value for the heater, the temperature sensor will read the actual temperature value which will be compared again with the temperature setting, the PID control will continue to process the error value and determine the PWM output value. until the actual temperature is equal to the setting temperature or the error value is zerohttp://jeeemi.org/index.php/jeeemi/article/view/257infant warmer, ds18b20, pid, fuzzy, tft nextion
spellingShingle Abdul Majid
Endang Dian Setioningsih
Abd Kholiq
Singgih Yudha Setiawan
Anilkumar Suthar
Comparative Analysis of PID and Fuzzy Temperature Control System on Infant Warmer
Journal of Electronics, Electromedical Engineering, and Medical Informatics
infant warmer, ds18b20, pid, fuzzy, tft nextion
title Comparative Analysis of PID and Fuzzy Temperature Control System on Infant Warmer
title_full Comparative Analysis of PID and Fuzzy Temperature Control System on Infant Warmer
title_fullStr Comparative Analysis of PID and Fuzzy Temperature Control System on Infant Warmer
title_full_unstemmed Comparative Analysis of PID and Fuzzy Temperature Control System on Infant Warmer
title_short Comparative Analysis of PID and Fuzzy Temperature Control System on Infant Warmer
title_sort comparative analysis of pid and fuzzy temperature control system on infant warmer
topic infant warmer, ds18b20, pid, fuzzy, tft nextion
url http://jeeemi.org/index.php/jeeemi/article/view/257
work_keys_str_mv AT abdulmajid comparativeanalysisofpidandfuzzytemperaturecontrolsystemoninfantwarmer
AT endangdiansetioningsih comparativeanalysisofpidandfuzzytemperaturecontrolsystemoninfantwarmer
AT abdkholiq comparativeanalysisofpidandfuzzytemperaturecontrolsystemoninfantwarmer
AT singgihyudhasetiawan comparativeanalysisofpidandfuzzytemperaturecontrolsystemoninfantwarmer
AT anilkumarsuthar comparativeanalysisofpidandfuzzytemperaturecontrolsystemoninfantwarmer