Implementation Of An Internet Of Things (IoT)-Based Indoor Air Quality Monitoring System: A Case Study Of PT. Bianglala Metropolitan
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Abstract
This research aims to develop an indoor air quality monitoring system using the ESP32-S3 equipped with gas, temperature, and humidity sensors. The introduction discusses the background of indoor air quality issues and the importance of real-time monitoring. The research objective is to design and implement a prototype device capable of efficiently detecting and monitoring air quality parameters. The methodology involves developing a prototype device by integrating gas, temperature, and humidity sensors into the ESP32-S3. Subsequently, testing is conducted to evaluate the prototype's performance in measuring and monitoring air quality indoors. The results indicate that the prototype successfully measures and monitors gas concentration, temperature, and humidity accurately. Monitoring data can be accessed in real-time through applications or web-based platforms. These findings suggest that the development of this system can be an effective solution for indoor air quality monitoring in various enclosed spaces. The conclusion of this research states that the implementation of gas, temperature, and humidity sensors in the development of an indoor air quality monitoring system using the ESP32-S3 has successfully achieved its intended goals. This system can serve as a foundation for further development to enhance monitoring and control of air quality in various indoor environments.
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References
Allen, J. G., MacNaughton, P., Satish, U., Santanam, S., Vallarino, J., & Spengler, J. D. (2016). Associations of Cognitive Function Scores with Carbon Dioxide, Ventilation, and Volatile Organic Compound Exposures in Office Workers: A Controlled Exposure Study of Green and Conventional Office Environments. Environmental Health Perspectives, 124(6), 805–812. https://doi.org/10.1289/ehp.1510037.
Anifam, A. (2021). Rancang Bangun Sistem Keamanan Brankas Menggunakan Sidik Jari (Fingerprint) Berbasis Arduino Uno dengan Notifikasi Telegram.
Andrizal, Lifwarda, Antonisfia, Zulharb, & Yuhefizar. (2020). Sistem Kontrol Berbasis Pemrograman LabVIEW MyRIO untuk Monitoring Kualitas Udara Dalam Ruangan.
Hanum, L., & Elfizon. (2023). Rancang Bangun Pemantau Kualitas Udara Dalam Ruangan Berbasis Internet of Things.
Kementerian Kesehatan Republik Indonesia. (2011). Peraturan Menteri Kesehatan Republik Indonesia Nomor 1077/MENKES/PER/V/2011 tentang Pedoman Penyehatan Udara Dalam Ruang Rumah. Jakarta: Kementerian Kesehatan Republik Indonesia.
Kristian. (2023). Implementasi sebagai Tahap Operasionalisasi Gagasan dalam Sistem.
Maharaksa. (2025). Tahapan Implementasi dalam Pengembangan Sistem dan Evaluasi Program.
Mokodompit, Wullur, Pasandaran, & Rotty. (2023). Implementasi sebagai Optimalisasi Pemanfaatan Sumber Daya.
Murad, R. F., Almasir, G., & Harahap, C. R. (2022). Pendeteksi Gas Amonia Untuk Pembesaran Anak Ayam Pada Box Kandang Menggunakan MQ-135. Jurnal Ilmiah Mahasiswa Kendali dan Listrik, 3(1), 120–130.
Naim, M. (2022). Teori Dasar Listrik dan Elektronika. Bojong Pekalongan: PT. Nasya Expanding Management.
Nasution, S. L., Girsang, E., Butar-Butar, E. F., Hafizah, N. Z., & Manalu, P. (2025). Dampak kualitas udara dalam ruangan terhadap kejadian ISPA di Kecamatan Medan Denai. Jurnal Kesehatan Lingkungan Indonesia, 24(3), 277–286.
Nugroho, Y. C., Mahardiko, A. A., Dhelia, S. S., Nuraini, A., & Harsadi, P. (2023). Rancang Bangun Sistem Pemantauan Kualitas Udara Berbasis Arduino Untuk Mendeteksi Polusi Udara di Perkotaan. Jurnal TIKomSiN, 11(2), 45–52. https://doi.org/10.30646/tikomsin.v11i2.795.
Oper, N., & Hasan, G. J. (2021). Rancang Bangun Buka Tutup Tempat Sampah Otomatis Berbasis Arduino. JINTEKS (Jurnal Informatika Teknologi dan Sains), 385.
Ridho'i, A., Setyadjit, K., & Hariadi, B. (2022). Pengaruh Suhu dan Kejernihan Air Pada Kolam Terpal Pembesaran Ikan Nila Memanfaatkan ATMEGA328. Jurnal Teknik Industri, 38–51.
Salsabila, A. A. (2021). Rancang Bangun Alat Deteksi Kadar Alkohol Pada Toner Wajah Berbasis Android. Tugas Akhir, Politeknik Negeri Sriwijaya.
Santosa, Hasan, A., & Selvia, N. (2023). Rancang Bangun Model Alat Penyiram Otomatis Bibit Kelapa Sawit Berbasis Arduino Uno dan Soil Moisture Sensor. Ponorogo: Uwais Inspirasi Indonesia.
Sendari, S., Wirawan, I. M., & Nasrullah, M. (2021). Sensor Tranduser. Malang: Ahlimedia Press.
Sujiarta, Wirarama, & Zubaidi. (2023). Sistem Monitoring Kualitas Udara di Ruangan Tertutup Berbasis IoT Menggunakan Sensor MQ-135 dan GP2Y1014AU0F.
Yunardi, D. H., Misbullah, A., & Gemilang, G. (2023). Rancang Bangun Sistem Web Monitoring Kualitas Udara di Dalam Ruangan Menggunakan Logika Fuzzy. Cyberspace: Jurnal Pendidikan Teknologi Informasi, 7(1), 25–34.
Zafira, Ghozali, & Sabilla. (2022). Rancangan Bangun Prototype Monitoring Kualitas Udara dalam Ruang.