PENERAPAN INTERNET OF THINGS (IOT) DALAM SISTEM OTOMATISASI PENGISIAN DEPOT AIR GALON
DOI:
https://doi.org/10.62671/suliwa.v3i2.236Keywords:
IoT, Gallon Water, ESP32, Flow Meter Sensor, RFID, real-time monitoring, WhatsApp, gallon water filling automationAbstract
Manually filling gallons of water causes many problems, such as volume inaccuracy, waste, and suboptimal water quality monitoring. This research aims to develop an Internet of Things (IoT)-based gallon water filling automation system using an ESP32 microcontroller and a flow meter sensor for accurate water volume measurement and real-time monitoring via a web dashboard and WhatsApp notifications. The methods used include literature review, hardware and software design, and comprehensive system testing. This system integrates RFID-based user authentication, automatic pump and solenoid valve control, transaction data recording in a MySQL database, and automatic user notifications. Test results show that the system can automatically and accurately fill gallons of water to the desired volume, stop the flow when the gallon is full, minimize human error, and allow users to monitor the filling process remotely. Thus, this system provides a more efficient, modern, and transparent gallon water filling solution for drinking water depot businesses
References
Azhar, A. R., Setiawan, D. A., Yasmin, N. A. A., Putri, T. A., & Nama, G. F. (2024). Sistem Monitoring Kapasitas Air Dan Pengisian Otomatis Berbasis IoT Menggunakan Modul Esp8266. Jurnal Informatika Dan Teknik Elektro Terapan, 12(1), 218–228. https://doi.org/10.23960/jitet.v12i1.3966
Maulana, T., Periyadi, & Meisaroh, L. (2023). Sistem Otomatisasi Pengisian Air Galon Isi Ulang Di Depot Air Berbasis IoT. E-Proceeding of Applied Science, 9(2), 789–802.
Mulyati, B. (2023). Rancang Bangun Alat Pengukur Kecepatan Aliran Air Menggunakan Water Flow Sensor Berbasis Arduino Uno. Jurnal Informatika, Teknologi Dan Sains, 2(1), 1–11. https://doi.org/10.56244/formateks.v2i1.721
Nainggolan, M., & Putra Caniago, D. (2023). Desain Pengisian Tangki Penyimpanan Air Otomatis Menggunakan Selenoid Valve Berbasis Arduino Dan Sensor Air. Jurnal Quancom, 1(1), 7–14.
Nizam, M. N., Haris Yuana, & Zunita Wulansari. (2022). Mikrokontroler Esp 32 Sebagai Alat Monitoring Pintu Berbasis Web. JATI (Jurnal Mahasiswa Teknik Informatika), 6(2), 767–772. https://doi.org/10.36040/jati.v6i2.5713
Saleh, M., & Supriono, S. (2024). Rancang Bangun Teknologi Tepat Guna Monitoring Penggunaan Multi Dispenser Air Otomatis Berbasis Internet of Things Dengan Mode Operasi Ganda Terapan. Transmisi: Jurnal Ilmiah Teknik Elektro, 26(3), 147–153. https://doi.org/10.14710/transmisi.26.3.147-153
Singgeta, R. L., & Manembu, P. D. K. (2019). Rancang Bangun Dispenser Air Bersih Otomatis Berbasis Web Menggunakan Teknologi RFID. Jurnal Teknik Elektro Dan Komputer, 8(3), 153–160.
Siti Epa Hardiyanti. (2024). Inovasi dalam Layanan Perbankan Berbasis Internet of Things (IOT) Peluang dan Tantangan di Era Digital. Maeswara : Jurnal Riset Ilmu Manajemen Dan Kewirausahaan, 2(3), 361–372. https://doi.org/10.61132/maeswara.v2i3.1041
Tjwanda Puetra Gunawan, & Setya Ardhi. (2025). Perancangan Dan Pengembangan Sistem DispenserAir Minum Otomatis Dengan Pencatatan KonsumsiBerbasis IoT. 28(1), 38–48.
Yusman, M., & Purnama, A. H. (2021). Prototipe Sistem Otomasi Pada Pengisian Depot Air Minum. Jurnal Teknologi Dan Informatika (JEDA), 2(2), 74.
Zaelani, M. S. (2024). No TitleSISTEM KERAN AIR OTOMATIS BERBASIS ESP 32. 17, 302.



