Development of an airflow monitoring system for air handling unit using IoT

Aman, Fadhilah and Rifdie, Muhammad Akmal and Mohammad Ganteh, Mohd Abdullah and Hussin, Ahmad Faiz and Yusof, Khairul Huda and Ahmad, Ahmad Sukri (2022) Development of an airflow monitoring system for air handling unit using IoT. Environment-Behaviour Proceedings Journal, 7 (SI10). pp. 1-7. ISSN 2398-4287

Official URL: https://ebpj.e-iph.co.uk/index.php/EBProceedings/i...

Identification Number (DOI): 10.21834/ebpj.v7iSI10.4128

Abstract

This paper presents the development of an airflow monitoring system for air handling units using NodeMCU ESP32. The main purpose of this project is to improvise the use of microcontroller with on-par performance for industrial applications. This proposed system consists of two sensors that measure airflow from the air handling unit. The first sensor is an airflow speed, which measures the airflow speed from the air handling unit. The second sensor detects and indicates the temperature and humidity of the airflow. The testing parameters show very good correlations among variables, indicating the efficiency of the system to monitor the airflow.

Metadata

Item Type: Article
Creators:
Creators
Email / ID Num.
Aman, Fadhilah
fadhilahaman@uitm.edu.my
Rifdie, Muhammad Akmal
akmalrifdie00@gmail.com
Mohammad Ganteh, Mohd Abdullah
mohammadabdullahganteh@gmail.com
Hussin, Ahmad Faiz
zahmadfaizhssn86@gmail.com
Yusof, Khairul Huda
khairul_huda@msu.edu.my
Ahmad, Ahmad Sukri
ahmadsukri.ahmad@petronas.com
Subjects: T Technology > TJ Mechanical engineering and machinery > Steam engineering
T Technology > TK Electrical engineering. Electronics. Nuclear engineering > Internet Protocol multimedia subsystem. Multimedia communications
Divisions: Universiti Teknologi MARA, Selangor > Puncak Perdana Campus > Faculty of Information Management
Journal or Publication Title: Environment-Behaviour Proceedings Journal
ISSN: 2398-4287
Event Title: 5th International Conference on Information Science
Event Dates: 19-21 September 2022
Volume: 7
Number: SI10
Page Range: pp. 1-7
Keywords: Airflow, IoT, Temperature, Humidity, Air handling unit
Date: November 2022
URI: https://ir.uitm.edu.my/id/eprint/143240
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