IoT-Based Air Quality Monitoring in Electronics Engineering Study Program Laboratories and Workshops

Angelia M. Purba, Daniel H. S. Napitu, Morlan Pardede, Jhonson Siburian
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Abstract

Comfortable laboratory and workshop rooms with good air quality are important factors in maximizing the learning process. The level of user density in laboratories and workshops used by D3 Telecommunication Engineering and D4 Telecommunication Network Engineering Technology This study aims to monitor air quality in the laboratories and workshops of the Electronics Engineering study program. This study uses a direct monitoring method by measuring O2 and CO2 levels, dust, and humidity in the laboratory and workshop rooms of the electronics engineering study program. From the results of the measurements that have been taken, it has been determined that the workshop room and the electronics laboratory room 2 do not meet the threshold limit value (NBA) for CO2 levels and temperature. The measured CO2 levels in the Electronics Engineering Study Workshop are 4,221 ppm–8,721 ppm and 3,965 ppm–7,296 ppm in the Electronics Engineering Study Laboratory. The highest temperature measured in the Electronics Engineering Laboratory Workshop is 34.20 °C and 32.80 °C in the Electronics Laboratory-2 room.
基于物联网的电子工程学习项目实验室和车间空气质量监测
舒适的实验室和车间以及良好的空气质量是最大限度地提高学习效率的重要因素。D3 电信工程和 D4 电信网络工程技术专业使用的实验室和车间的用户密度水平 本研究旨在监测电子工程专业实验室和车间的空气质量。本研究采用直接监测法,测量电子工程专业实验室和车间的氧气和二氧化碳含量、灰尘和湿度。测量结果表明,车间和电子实验室 2 室的二氧化碳含量和温度均未达到阈限值 (NBA)。在电子工程研究车间测得的二氧化碳含量为百万分之 4221 至 8721,在电子工程研究实验室测得的二氧化碳含量为百万分之 3965 至 7296。在电子工程实验室车间测得的最高温度为 34.20 °C,在电子实验室-2 室测得的最高温度为 32.80 °C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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