Implementasi Internet Of Things dalam Memonitoring Penyediaan Air Pada Perumda Air Minum Tirta Dharma

Authors

  • Christian Elie Djuang Asa Taek Universitas Katolik Widya Mandira
  • Patrisius Batarius Universitas Katolik Widya Mandira
  • Alfry Aristo Jansen Sinlae Universitas Katolik Widya Mandira
  • Danni Hastanto Rambing Universitas Katolik Widya Mandira

DOI:

https://doi.org/10.24002/prosidingkonstelasi.v3i1.13448

Keywords:

PERUMDA, IoT, Mikrokontroller, Blynk, Sensor ultrasonik HC-SR04

Abstract

Penyediaan air yang efisien dan terkontrol merupakan aspek krusial dalam manajemen sumber daya air, khususnya bagi PERUMDA (Perusahaan Umum Daerah) Air Minum Tirta Darma. Penelitian ini bertujuan untuk mengembangkan sistem monitoring penyediaan air berbasis Internet of Things (IoT) dengan menggunakan NodeMCU ESP32, sensor ultrasonik HC-SR04, serta platform Blynk sebagai notifikasi dan pengontrol distribusi air. Sistem ini bekerja dengan mendeteksi ketinggian air dalam bak penampung menggunakan sensor ultrasonik yang terintegrasi dengan NodeMCU ESP32. Data yang diperoleh kemudian dikirim secara real-time ke aplikasi Blynk, yang memungkinkan pengguna untuk memantau status air dan mengendalikan pompa air submersible serta katup solenoid melalui aplikasi tersebut. Sistem akan mengaktifkan pompa secara otomatis ketika ketinggian air turun hingga 2 cm3 dan akan mati saat mencapai 8 cm3, sesuai dengan batas yang telah ditentukan. Sistem notifikasi berbasis Blynk mampu mengirimkan data ketinggian air dari sensor ultrasonik, sementara kontrol aktuator (pompa dan solenoid valve) berfungsi sesuai dengan skenario yang dirancang.

References

[1] V. D. Gowda, V. N. R. Bandaru, A. Y. Begum, D. Palanikkumar, and A. C. Jadhav, “Internet of Things (IoT): Definitions, Components, Characteristics and Applications,” Curr. Overv. Sci. Technol. Res. Vol 8, pp. 68–79, Nov. 2022, doi: 10.9734/bpi/costr/v8/3535C.

[2] P. Nidagundi, “History of Internet of Things,” in The IoT Product Manager: A Handbook for Engineers, Data Analysts, and Other IT Professionals, P. Nidagundi, Ed., Berkeley, CA: Apress, 2022, pp. 1–18. doi: 10.1007/978-1-4842-8631-9_1.

[3] A. Salukhe, “Internet of Things,” Int. J. Res. Appl. Sci. Eng. Technol., vol. 11, no. 9, pp. 1062–1069, Sept. 2023, doi: 10.22214/ijraset.2023.55710.

[4] G. Büyüközkan, D. Uztürk, and Ö. Ilıcak, “Digitalization in Industry: IoT and Industry 4.0,” in Enabling Technologies for the Successful Deployment of Industry 4.0, CRC Press, 2020.

[5] Dr. T. Kalakumari, Dr. J. Murugadhas, and Networking/Internet and E-Security Section, IT Department, University of Technology and Applied Sciences-Nizwa, Sultanate of Oman., “Internet of Things (IoT) in Industry and Other Applications,” YMER Digit., vol. 21, no. 03, pp. 159–164, Mar. 2022, doi: 10.37896/YMER21.03/18.

[6] V. Radhakrishnan and W. Wu, “IoT Technology for Smart Water System,” in 2018 IEEE 20th International Conference on High Performance Computing and Communications; IEEE 16th International Conference on Smart City; IEEE 4th International Conference on Data Science and Systems (HPCC/SmartCity/DSS), June 2018, pp. 1491–1496. doi: 10.1109/HPCC/SmartCity/DSS.2018.00246.

[7] H. Mohapatra and A. K. Rath, “IoT-based smart water,” IoT Technol. Smart Cities Sens. Big Data Secur. Trust, pp. 63–82, July 2024, doi: 10.1049/PBCE128E_ch3.

[8] D. L. Owen, “Smart water management,” River, vol. 2, no. 1, pp. 21–29, Feb. 2023, doi: 10.1002/rvr2.29.

[9] Mrs. D. Jose J, Dr. D. V. Kumar, and Mrs. Jayakeerthi, “IOT IN THE MODERN WORLD,” in Futuristic Trends in Computing Technologies and Data Sciences Volume 3 Book 8, First., Dr. R. Panchal, Dr. K. Santhi, Dr. A. P. Daniel D, Mr. R. Pardeshi, Dr. P. Saxena, Dr. J. Pillai, Dr. S. G. Joseph, Ms. W. Mary, Dr. P. Singh, Dr. G. S, Dr. W. M. Olatokun, Dr. S. Gunalan, Dr. D. V. Kumar, Dr. C. K. Subbaraya, Dr. D. Mane, Mr. A. Kumar S, Dr. S. Gonge, Dr. P. Raj P, Dr. S. Bhushan, and Mr. V. Bajpai, Eds., Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024, pp. 284–290. doi: 10.58532/V3BKCT8P4CH2.

[10] A. D. Gupta, P. Pandey, A. Feijóo, Z. M. Yaseen, and N. D. Bokde, “Smart Water Technology for Efficient Water Resource Management: A Review,” Energies, vol. 13, no. 23, p. 6268, 2020, doi: 10.3390/en13236268.

[11] R. Agarwal, A. Dixit, and S. V. Karatangi, “Application of IoT in Water Supply Management,” in Predictive Analytics, CRC Press, 2021.

[12] T. P. Truong, G. T. Nguyen, and L. T. Vo, “Towards an IoT-Based System for Monitoring of Pipeline Leakage in Clean Water Distribution Networks,” EAI Endorsed Trans. Smart Cities, vol. 6, no. 17, pp. e5–e5, Mar. 2022, doi: 10.4108/eetsc.v6i17.230.

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Published

2026-01-31