Baby Incubator Temperature Control With PID System
Keywords:
PID, Atmega328, DHT11, DS18B20Abstract
A Baby incubator is one of the right instruments to overcome problems in handling newborn babies. An important parameter to control is the temperature of the baby incubator room. A study has been conducted on the Design of Baby Incubator Temperature Control with a PID System using a DHT22 sensor for the incubator room temperature sensor and a DS18B20 sensor for the baby's skin sensor. The microcontroller used is ATmega328. The temperature is maintained at 36 °C. There is a heater component to heat the Baby Incubator if the temperature is >36 °C, a blower as a cooler if the temperature is <36 °C. The temperature condition is displayed on the Nextion 4.3" LCD in real time using touchscreen technology. After being compared with the Incubator Analyzer, the overshoot value on the Incubator Analyzer was 0.74% while on the device made it was 0.20%. While the error value on the Incubator Analyzer was 0.02%, on the device made it was 0.01%. So it can be concluded that the tool operates properly according to what was planed.
References
M. Amelia, "Temperature Monitoring and Control System in Web-Based Baby Incubators," Journal of Electrical and Vocational Engineering, vol. 6, no. 2, 2020.
R. Firdaus and W. Zulfikar, "The Room Temperature Controller Uses the PID Method," Telecontrovert, vol. 4, no. 2, 2016.
B. G. Irianto, A. M. Maghfiroh, M. Sofie, and A. Kholiq, "Baby Incubator with Overshoot Reduction System using PID Control Equipped with Heart Rate Monitoring Based on the Internet of Things," International Journal of Technology, vol. 4, no. 2, 2022.
N. Irwan et al., "Design and Build Early Warnings on Atmega 89S52 Microcontroller-Based Baby Incubator," Darma Agung Journal, vol. 28, no. 2, 2020.
A. Kurniawan and B. Suprianto, "Design and Build Temperature Control Systems in PID and LabView Based Baby Incubators," Journal of Electrical Engineering, vol. 7, no. 3, 2014.
S. Muharom et al., "Implementation of Temperature Control Using the PID Method in Infant Warmers Incubator Applications," Cyclotron Journal, vol. 4, no. 1, 2021.
B. Nurvahya, I. Widhiada, and I. Subagia, "Temperature Stability Control System in Arduino Uno Based Baby Incubator with Matlab/Simulink," METTEK Journal, vol. 2, no. 1, 2016.
R. Qoyima, Automatic Baby Incubator System Design with Fuzzy-PID Control Method, Thesis, University of Jember, 2020.
N. Salahuddin, "Portable Baby Incubator System," presented at National Seminar of TEKNOIN, 2013.
N. Shakhnazarova, "Newborn baby 'burns to death' in makeshift hospital incubator," New York Post, 2019.
J. Sugihatmoko, Application of PID Controller in Temperature Control of Premature Infant Incubator Based on Atmega 2560 Microcontroller, Thesis, Brawijaya University, 2015.
A. Vidaryanto, H. Wisana, A. Kholiq, and R. Dewiningrum, "PID Temperature Control of Baby Incubator Transport Battery Ef-ficiency," Journal of Technology, vol. 17, no. 1, 2024.
M. Wahid et al., "PLC-Based Incubator Room Temperature Controller," EL SAINS Journal Electrical Journal, vol. 1, no. 2, 2019.
Wicaksono, S. Syahrorini, and I. Anshory, An Introduction to Interfacing Techniques, Sidoarjo: UMSIDA Press, 2022.