SISTEM MONITORING DAN KONTROL POMPA PENDORONG BERBASIS IOT PADA GEDUNG BERTINGKAT
Keywords:
water distribution, ESP32, Internet of Things (IoT), monitoring, pump controlAbstract
This study aims to design a prototype of an Internet of Things (IoT)-based booster pump monitoring and control system using ESP32 to support water distribution in multi-story buildings. The system consists of an ultrasonic sensor, pressure sensor, flow meter, BTS7960 driver, relay, 20×4 I2C LCD, and the Blynk app as a medium for remote monitoring and control. The research methods include system design, implementation, and testing. The test results showed an average accuracy of the ultrasonic sensors at 93.62% and 95.16%, while the automatic control function, manual control via Blynk, and system parameter monitoring achieved a 100% success rate. These results indicate that the system can monitor water distribution conditions in real-time and control pump operations both automatically and manually, thus improving the effectiveness of IoT-based water distribution management.
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A. A. Triansyah, F. T. Mustika, S. Meilinda, S. P. Anjani, and Y. Dzakkiya, “Jurnal Inovasi Pendidikan Kreatif,” Perubahan Tren Digit. Teknol. Dalam Kesehat. Jasm. Saat Pandemi Covid-19, vol. 6, no. 2, pp. 239–250, 2025, [Online]. Available: https://ijurnal.com/1/index.php/jipk
A. Ramadhan, J. Jamaaluddin, and S. D. Ayuni, “Alat Pendeteksi Dini Kebakaran dan Pemadam Otomatis Dilengkapi dengan Video Streaming Berbasis Internet of Things,” SinarFe7, vol. 4, no. 1, pp. 645–649, 2021.
F. Widodo, E. Mardianto, and Y. C. Hendro Yuwono, “Purwarupa Monitoring Tandon Air Dan Kontrol Pompa Secara Otomatis Berbasis Internet Of Things,” J. Elit, vol. 5, no. 2, pp. 24–32, 2024, doi: 10.31573/elit.v5i2.882.
I. K. A. D. I. Wiraguna et al., “Pengembangan Sistem Monitoring Water Level Control Dan Pengisian Air Otomatis Berbasis Internet Of Things ( IoT ),” 2024.
I. Suputra, “Simulasi Sistem Monitoring dan Kontrol Ground Water Tank Secara Otomatis Berbasis Internet of Things,” 2024, [Online].
M. Ali, D. Prihatmoko, and A. Faidlon, “3) 1-3),” vol. 7, pp. 206–218, 2025.
M. H. Reza, K. Erwansyah, and L. Lusiyanti, “Monitoring Tangki Air Berbasis Internet Of Things,” J. Sist. Komput. Triguna Dharma (JURSIK TGD), vol. 2, no. 2, pp. 139–146, 2023, doi: 10.53513/jursik.v2i2.7370.
R. A. Prasmono, R. I. Sudjoko, and S. Hariyadi, “Dengan Sensor Volume Bahan Bakar Pada Genset Dengan Fitur Monitoring Berbasis IoT Udara Iskandar Pangkalanbu untuk,” pp. 1–13, 2020.
T. D. Hakim, A. Rizqi, N. Ashshidiq, F. Teknik, U. Krisnadwipayana, and S. Ultrasonik, “Rancang Bangun Sistem Kendali Ketinggian Level Air Pada Groundtank Berbasis Esp32,” J. Elektro, vol. 12, no. 1, pp. 69–79, 2024.
U. Ulumuddin, M. Sudrajat, T. D. Rachmildha, N. Ismail, and E. A. Z. Hamidi, “Prototipe Sistem Monitoring Air Pada Tangki Berbasis Internet of Things Menggunakan Nodemcu Esp8266 Sensor dan Ultrasonik,” Semin. Nas. Tek. Elektro 2017, no. 2016, pp. 100–105, 2017, doi: 978-602-512-810-3.
V. Adiputra, Prototype Sistem Kontrol & Monitoring Pompa Pdam Di Pekalongan Via Internet of Things (Iot). 2024.
Y. M. Djaksana and K. Gunawan, “Perancangan Sistem Monitoring Dan Kontroling Pompa Air Berbasis Android,” SINTECH (Science Inf. Technol. J., vol. 4, no. 2, pp. 146–154, 2021,doi: 10.31598/sintechjournal.v4i2.741.
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