Analysis of the Indoor Comfort Control System Catering to the Environmental Needs of Elderly People Living Alone

Authors

  • Xunkai Hu

DOI:

https://doi.org/10.54097/z2qren75

Keywords:

Smart Home, Elderly Care, STM32, Temperature and Humidity Control, Keil.

Abstract

With the acceleration of the social aging process, the health and quality of life of elderly people living alone have attracted increasing attention. This paper designs and implements an intelligent home environment control system specifically tailored for elderly people living alone. The system, centered around the STM32 microcontroller, collects real-time temperature and humidity data from digital sensors. Based on preset control algorithms, it automatically regulates executive devices such as fans, heating pads, dehumidifiers, and humidifiers to maintain a comfortable and healthy indoor environment. During the development process, an efficient workflow is adopted, which involves using Keil MDK for firmware development and combining it with Proteus, thus ensuring the reliability and correctness of the system. This system can effectively control the environmental temperature and humidity within the preset comfortable range. This project provides a reliable solution for improving the wellbeing of elderly people living alone and demonstrates significant application value in the field of smart elderly care.

Downloads

Download data is not yet available.

References

[1] Zhu D, Wang Y. Smart Home Control and Implementation for Elderly People Living Alone Based on STM32 Microcontroller. In: 2024 6th International Conference on Robotics, Intelligent Control and Artificial Intelligence (RICAI), Nanjing, China, Dec. 6–8, 2024.

[2] Zhang Y, et al. Intelligent Home Environment Monitoring System Based on STM32 Microcontroller. In: 2023 IEEE International Conference on Electrical, Automation and Computer Engineering (ICEACE), Changchun, China, Dec. 29–31, 2023.

[3] Adiono T, Fathany M Y, Fuada S, Purwanda I G, Anindya S F. A Portable Node of Humidity and Temperature Sensor for Indoor Environment Monitoring. In: 2018 3rd International Conference on Intelligent Green Building and Smart Grid (IGBSG), Yilan, Taiwan, Apr. 22–25, 2018.

[4] Zhang X, Wang Y, Li Z. Design and Implementation of Smart Home System Based on STM32. In: 2022 4th International Academic Exchange Conference on Science and Technology Innovation (IAECST), Dec. 9–11, 2022.

[5] Song D. Design and Implementation of Intelligent Home Temperature Control System. Audio Engineering, 2019, 43(11): 51–53.

[6] Pan X. Design of Family Temperature and Humidity Remote Control System Based on STM32. Modern Industrial Economy and Informationization, 2021, (10): 83–84.

[7] Zhang H, Dong A, Tan H. Design and Production of Intelligent Air Conditioner Dehumidifier Based on STM32 Microcontroller. Microcontrollers & Embedded Systems, 2023, 26(24).

[8] Yu Y, Chen R, Zhao Z, et al. An Intelligent Dehumidification Wardrobe with Remote Control Function Based on Single-Chip Microcomputer. Industrial Control Computer, 2018, 31(10): 146+158.

[9] Zhang W, Zhong X, Ma X. Design of Greenhouse Temperature and Humidity Control System Based on Single-Chip Microcomputer. Agriculture and Technology, 2015, 35(22): 216–217.

[10] Yan J, Zheng Q. Research on the Intelligent Mushroom House Temperature and Humidity Control System. Agricultural Mechanization Research, 2006, (10): 103–106.

Downloads

Published

30-03-2026

Issue

Section

Articles

How to Cite

Hu, X. (2026). Analysis of the Indoor Comfort Control System Catering to the Environmental Needs of Elderly People Living Alone. Academic Journal of Science and Technology, 20(2), 298-303. https://doi.org/10.54097/z2qren75