Implementasi Sistem Monitoring Suhu dan Kualitas Udara Berbasis Internet of Things (IoT) dengan Kontrol Blower Otomatis
DOI:
https://doi.org/10.29408/jit.v9i1.32903Keywords:
internet of things, Monitoring, Smart HealthcareAbstract
Monitoring temperature and air quality are important factors in creating a comfortable and safe treatment room environment for patients. This study aims to design and implement an Internet of Things (IoT)-based temperature and air quality monitoring system integrated with automatic blower control. The system was developed using the Research and Development (R&D) method by utilizing a DHT22 sensor for temperature and humidity measurement and an MQ135 sensor for air quality detection, controlled by NodeMCU ESP8266. The system was tested by comparing the temperature sensor readings with a thermohygrometer and testing the system's response to changes in environmental conditions. The test results showed that the system was able to monitor temperature and air quality in real-time with a temperature measurement error rate of 0.21% and was able to activate the blower automatically when the temperature and air quality values exceeded the specified thresholds. Thus, the developed system proved to work well and can be used as an IoT-based environmental monitoring solution for treatment rooms.
References
[1] N. F. Purba, F. S. Annisa, A. Syafitri, and S. H. Purba, “Pemanfaatan Teknologi Digital Dalam Pelayanan Kesehatan Publik” vol. 8, no. 6, pp. 38–44, 2024.
[2] I. Gunawan, T. Akbar, and M. G. Ilham, “Prototipe Penerapan Internet Of Things (Iot) Pada Monitoring Level Air Tandon Menggunakan Nodemcu Esp8266 Dan Blynk,” vol. 3, no. 1, pp. 1–7, 2020.
[3] A. M. Sentosa and D. Anugrah, “Alat Monitoring Suhu dan Tekanan Udara di Ruang Isolasi Kelas Negatif Berbasis IoT,” no. 117, 2024.
[4] H. Budianto and B. Sumanto, “Perancangan Sistem Monitoring Kualitas Udara dalam Ruangan Berbasis Internet of Things,” vol. 5, no. 1, pp. 9–17, 2024.
[5] T. Lembaran, T. Lembaran, T. Lembaran, and T. Lembaran, “BERITA NEGARA,” no. 55, 2023.
[6] M. Lingkungan, H. Dan, and K. Republik, “No Title,” pp. 1–16, 2020.
[7] R. A. Lestari and H. Pangaribuan, “Desain Dan Implementasi Sistem Pemantauan Kualitas Udara Dalam Ruangan Berbasis Arduino,” vol. 03, 2025.
[8] A. Budiawan, R. R. Suryono, and D. Darwis, “Implementation of Internet of Things Based Ammonia Gas Sensors on Broiler Chicken Farms with an Automatic Air Quality Monitoring and Control System Implementasi Sensor Gas Amonia Berbasis Internet of Things pada Peternakan Ayam Potong dengan Sistem Monitoring dan Pengendalian Kualitas Udara Otomatis,” vol. 5, no. January, pp. 343–349, 2025.
[9] N. R. Kholifah Andiliyani Mariyama and W. M. Hadiansyah, “Sistem Monitoring Kualitas Udara di Dalam Ruangan Berbasis IoT di Mall Royal Plaza Surabaya,” pp. 106–111, 2024.
[10] R. Santosa, P. A. Sari, and A. T. Sasongko, “Sistem Monitoring Suhu dan Kelembaban Berbasis IoT ( Internet of Thing ) pada Gudang Penyimpanan PT Sakafarma Laboratories,” vol. 5, no. 4, pp. 391–400, 2023.
[11] A. F. Pratama and R. Setyobudi, “Sistem Monitoring Smart Klinik Berbasis Internet Of Things ( IoT ),” vol. 5, no. 1, pp. 24–30, 2023.
[12] I. Gunawan and M. Wasil, “Penerapan Internet Of Things ( IoT ) Pada Sistem Monitoring Penggunaan Air PDAM.” vol. 6, no. 1, pp. 115–126, 2023.
[13] I. Gunawan, M. Sadali, and H. Ahmadi, “Infotek : Jurnal Informatika dan Teknologi Perancangan Aplikasi KWH Meter Dan Sistem Monitoring Konsumsi Listrik Berbasis Internet Of Things Untuk Kamar Kos-Kosan” vol. 8, no. 1, 2025.
[14] I. Gunawan and H. Ahmadi, “Sistem Monitoring Dan Pengkabutan Otomatis Berbasis Internet Of Things (IoT) Pada Budidaya Jamur Tiram Menggunakan NodeMCU dan Blynk,” vol. 4, no. 1, 2021.
[15] A. D. Ramadhani, A. Nurcahya, N. Azizah, and N. Ningsih, “Klasifikasi dan Monitoring Kualitas Udara Dalam Ruangan menggunakan Thingspeak,” vol. 10, no. 1, 2023.
[16] A. Iman, H. M. Putra, and M. Nuzuluddin, “Rancang Bangun Sistem Absensi Staf Universitas Hamzanwadi Menggunakan KTP Berbasis Internet of Things ( IoT )” vol. 2, no. 1, pp. 73–82, 2024.
[17] H. M. Putra, T. Akbar, A. Hafifan, T. Putra, I. Wahidah, and V. No, “Revolusi Keamanan Berkendara: Sistem Keselamatan Berbasis Mikrokontroler,” vol. 7, no. 2, 2024.
[18] Z. Azzahrah, “Rancang Bangun Alat Kontroling Kadar Udara Bersih Dan Gas Berbahaya Co , Co2 Dalam Ruangan Berbasis Mikrokontroler,” pp. 216–222.
[19] A. Siswanto, M. Munaji, F. Irmansyah, and M. L. Abdullah, “Rancang Bangun Pengamananan Stopkontak Berbasis Arduino Mega,” vol. 2, no. 2, pp. 1–11, 2020.
[20] D. Lufhf, B. Wahyudi, S. Kapasitas, and A. Pengisian, “Studi Optimasi Pengaruh Sisa Kapasitas dan Arus Pengisian Terhadap Keandalan Individu Baterai LiFePO4,” no. 3, pp. 1–10, 2024.
[21] I. Gunawan, H. Ahmadi, and M. R. Said, “Rancang Bangun Sistem Monitoring Dan Pemberi Pakan Otomatis Ayam Anakan Berbasis Internet Of Things ( IoT )” vol. 4, no. 2, pp. 151–162, 2021.
[22] M. Sadali and S. Sarkasi, “Perancangan Sistem Ujian Online Berbasis Web di Sekolah Menengah Kejuruan (Smk) Maraqitta’limat Mamben,” vol. 1, no. 1, pp. 64–70, 2018.
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