STORAGE ROOM TEMPERATURE AND HUMIDITY MONITORING IOT- BASED MEDICINE

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Mohamad Adnan Fauzi
Rahmat Hidayat
Taufik Hidayat

Abstract

This research is important as it portrays a notable advancement in current internet technology known as the Internet of Things (IoT), which facilitates advanced services through the interconnection of physical and virtual objects. One crucial aspect of everyday life is air quality, especially indoors, as indoor air pollution differs from outdoor air pollution. An important indicator to determine the cleanliness of a room is its humidity level. In this context, this research holds significant relevance as it can help ensure the effectiveness and safety of stored medications under appropriate temperature and humidity conditions. Therefore, this study designed a drug storage room that requires a tool to measure the humidity value of the room in real time and the humidity conditions in the room. The solution to this problem can be overcome using Internet of Things technology. In this project, a hygrometer, or humidity meter, based on Internet of Things technology is made. Humidity is measured by the DHT-11 sensor, which is integrated on the NodeMCU ESP8266 board. Humidity measurement data can be observed via the Blynk IoT platform available on smartphones. With this tool, humidity can be observed in real time, even from a distance. The results of this study are that the tool can measure the temperature and humidity of the medicine room, and the tool can send humidity and temperature measurement data to the Blynk IoT and MIT APP Inventor servers. On the Blynk IoT website, the dashboard can display temperature, humidity, and drug safety measurement data in real time.

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How to Cite
Fauzi, M. A. ., Hidayat, R., & Hidayat, T. (2023). STORAGE ROOM TEMPERATURE AND HUMIDITY MONITORING IOT- BASED MEDICINE. TEKNOKOM, 6(2), 78–85. https://doi.org/10.31943/teknokom.v6i2.135

References

  1. T. Budioko, "SISTEM MONITORING SUHU JARAK JAUH BERBASIS INTERNET OF THINGS MENGGUNAKAN PROTOKOL MQTT," Seminar Riset Teknologi Informasi (SRITI), vol. VIII, pp. 353-358, 2016.
  2. F. Akbar and S. , "IMPLEMENTASI SISTEM MONITORING SUHU DAN KELEMBAPAN RUANGAN PENYIMPANAN OBAT BERBASIS INTERNET OF THINGS (IoT) DI PUSKESMAS KECAMATAN TAMAN SARI JAKARTA BARAT," Jurnal Sosial dan Teknologi (SOSTECH), vol. I, no. 9, pp. 1021-1028, 2021.
  3. I. Karlida and I. Musfiroh, "SUHU PENYIMPANAN BAHAN BAKU DAN PRODUK FARMASI DI GUDANG INDUSTRI FARMASI," Farmaka, vol. XV, no. 4, pp. 58-67, 2017.
  4. K. Prawiroredjo and A. . A. M. Khalifa, "MODEL SISTEM PENGENDALIAN SUHU DAN KELEMBABAN RUANGAN PRODUKSI OBAT BERBASIS NODEMCU ESP32," Jurnal Teknik Elektro, Teknologi Informasi dan Komputer, vol. VI, no. 1, pp. 13-25, 2021.
  5. M. . S. Nashir, W. Kartika and S. A. Wibowo, "Pemantauan Suhu Kelembaban dan Tekanan Udara Terpusat pada Ruang Operasi Menggunakan Aplikasi Blynk," Medika Teknika : Jurnal Teknik Elektromedik Indonesia, vol. III, no. 2, pp. 49-58, 2022.
  6. S. . H. Sasono, A. . S. Nugroho, E. Supriyanto, . E. Wasito and A. Hasan, "IoT Smart Health for Monitoring and Control of Temperature and Humidity of Vaccine and Drug Storage based on Android at Health Center," JAICT, Journal of Applied Information and Communication Technologies, vol. VII, no. 2, pp. 119-124, 2022.
  7. I. Syukhron, R. Rahmadewi, S.T.,M.T and I. S. , "Penggunaan Aplikasi Blynk Untuk Monitoring dan Kontrol Jarak Jauh pada Sistem Kompos Pintar Berbasis IoT," ELECTRICIAN – Jurnal Rekayasa dan Teknologi Elektro, vol. XV, no. 1, pp. 1-11, 2021.
  8. D. Hidayat and I. Sari, "MONITORING SUHU DAN KELEMBABAN BERBASIS INTERNET of THINGS (IoT)," Jurnal Penelitian Teknik Informatika Universitas Prima Indonesia (UNPRI) Medan, vol. IV, no. 1, pp. 525-530, 2021.
  9. J. Waworundeng, O. Dumanaw and T. Rumawouw, "Prototipe Detektor Suhu dan Kelembaban Berbasis IoT di Ruang Server Sistem Informasi Universitas Klabat," Cogito Smart Journa, vol. VII, no. 1, pp. 193-203, 2021.
  10. A. H. Saptadi, "Perbandingan Akurasi Pengukuran Suhu dan Kelembaban Antara Sensor DHT11 dan DHT22," Jurnal Infotel, vol. VI, no. 2, pp. 49-56, 2014.
  11. A. Najmurrokhman, K. and A. , "PROTOTIPE PENGENDALI SUHU DAN KELEMBABAN UNTUK COLD STORAGE MENGGUNAKAN MIKROKONTROLER ATMEGA328 DAN SENSOR DHT11," Jurnal Teknologi, vol. X, no. 1, pp. 73-82, 2018.
  12. M. I. Hakiki,, U. Darusalam and N. D. Nathasia, "Konfigurasi Arduino IDE Untuk Monitoring Pendeteksi Suhu dan Kelembapan Pada Ruang Data Center Menggunakan Sensor DHT11," JURNAL MEDIA INFORMATIKA BUDIDARMA, vol. IV, no. 1, pp. 150-156, 2020.
  13. H. H. Fitriyah and G. E. Setyawan, "Sistem Pemantauan Menggunakan Blynk dan Pengendalian Penyiraman Tanaman Jamur Dengan Metode Logika Fuzzy," Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer, vol. III, no. 4, pp. 3258-3265, 2019.
  14. I. P. L. Lubis, . I. Marsaulina and S. Dharma, "KEBERADAAN BAKTERI LEGIONELLA PADA RUANGAN BER AC DAN KARAKTERISTIK SERTA KELUHAN KESEHATAN PEGAWAI DI KANTOR GUBERNUR SUMATERA UTARA TAHUN 2014," pp. 1-7.
  15. S. and S. A. Putra, "PERANCANGAN SISTEM PENJADWALAN DAN MONITORING PEMBERI PAKAN IKAN OTOMATIS BERBASIS INTERNET OF THING," Jurnal Aplikasi Dan Inovasi Ipteks SOLIDITAS, vol. II, no. 1, pp. 33-41, 2019.

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