Rancang Bangun Purwarupa Kontrol dan Monitoring Kecepatan Motor Induksi Menggunakan Aplikasi SCADA Haiwell Cloud

Authors

  • Rahmat Jurusan Teknik Elektro, Politeknik Negeri Pontianak Author
  • Hasan Jurusan Teknik Elektro, Politeknik Negeri Pontianak Author
  • Rianda Jurusan Teknik Elektro, Politeknik Negeri Pontianak Author

Keywords:

Induction Motor, SCADA, Haiwell Cloud, HMI

Abstract

An induction motor that does not operate stably can lead to various issues, such as rotational speed fluctuations that may shorten the motor's lifespan. To address this problem, a system capable of effective monitoring and control is required. One potential solution is a SCADA (Supervisory Control and Data Acquisition) system, which has proven to enhance the efficiency and reliability of induction motor operations. This study aims to design and develop a prototype system for controlling and monitoring the speed of an induction motor using the Haiwell Cloud SCADA application. The system features real-time monitoring to detect potential disturbances at an early stage, as well as control functions to adjust the motor speed as needed. The research methodology employs a qualitative approach with an experimental method that includes system design, implementation, and testing. The prototype consists of hardware components such as a PLC and an optical sensor for measuring RPM, as well as software based on an HMI (Human-Machine Interface) integrated with the Haiwell Cloud SCADA. The test results indicate that the system is reliable in accurately and efficiently monitoring and controlling motor speed through a cloud-based interface.

References

[1] R. N. Rohmah, A. Budiman, V. Latiefudin, R. Jurusan, and T. Elektro, “Sistem Pemantauan dan Pengendalian Penggunaan Air Menggunakan Aplikasi Telegram Berbasis IoT,” 2020.

[2] H. B. Marulasiddappa and V. Pushparajesh, “Review on different control techniques for induction motor drive in electric vehicle,” IOP Conf. Ser. Mater. Sci. Eng., vol. 1055, no. 1, p. 012142, Feb. 2021, doi: 10.1088/1757-899x/1055/1/012142.

[3] S. Sridhar, K. U. Rao, R. Umesh, and K. S. Harish, “Condition monitoring of Induction Motor using statistical processing,” in IEEE Region 10 Annual International Conference, Proceedings/TENCON, Institute of Electrical and Electronics Engineers Inc., Feb. 2017, pp. 3006–3009. doi: 10.1109/TENCON.2016.7848597.

[4] P. Sumarta and Z. Aini, “Desain Penggunaan Variable Frequency Drive (VFD) Pada Starting-Up Motor Induksi 3 Fasa Menggunakan Metode Sinusoidal Pulse-Width Modulation (SPWM),” J. Al-AZHAR Indones. SERI SAINS DAN Teknol., vol. 9, no. 3, p. 317, Oct. 2024, doi: 10.36722/sst.v9i3.2910.

[5] G. Yadav and K. Paul, “Architecture and Security of SCADA Systems: A Review,” IIT Delhi, Jan. 2020, [Online]. Available: http://arxiv.org/abs/2001.02925

[6] I. Diah Prahmana Karyatanti, I. Winarno, D. Rahmatullah, B. Yan Dewantara, and dan Tri Rusti Maydrawati, “Pengembangan Cloud SCADA 1.3 sebagai otomasiindustri jarak jauhindustri jarak jauh,” J. Tek. Elektro, vol. 7, 2024.

[7] T. Sundana, F. Aditya Johari, and F. Al Ariiq, “Prototipe Sistem Monitoring Kebocoran Pipa Distribusi Air Berbasis SCADA,” J. Indones. Sos. Teknol., vol. 3, no. 1, 2022.

[8] A. Kaur and D. P. Bhatt, “Developing a Hybrid Irrigation System for Smart Agriculture Using IoT and Machine Learning Sri Ganganagar, Rahasthan,” J. Sens., 2024.

[9] B. Et-taibi et al., “Enhancing water management in smart agriculture: A cloud and IoT-Based smart irrigation system,” Results Eng., vol. 22, Jun. 2024, doi: 10.1016/j.rineng.2024.102283.

[10] M. N. Hidayat, S. S. Wibowo, and M. G. E. Prasetya, “Kajian Manajemen Energi Listrik Pada Stasiun Pompa Air,” J. Sist. Kelistrikan, 2020.

[11] H. R. Iskandar, E. Juniarto, and N. Heryana, “Sistem Monitoring Cerdas pada Motor Induksi 3 Fasa Berbasis Jaringan Sensor Nirkabel dan Aplikasi Blynk Server,” J. Tek. Media Pengemb. Ilmu dan Apl. Tek., vol. 17, no. 2, p. 94, Dec. 2018, doi: 10.26874/jt.vol17no2.82.

[12] R. Reza Pradhana, B. Alit Prasetyo, and Y. Syukriyah, “Implementasi Internet of Things Dalam Monitoring dan Controling Variable Frequency,” J. Ilm. Inform. Glob., 2023.

[13] R. Setiawan and A. Setiawan, “Pengendalian dan Pemantauan Motor Listrik 1 Fasa Dengan Sistem Iinternet Of Things (IOT),” 2024.

[14] A. Supardi, U. Umar, I. Setiyoko, and M. Saifurrohman, “Rancang Bangun Sistem Kendali Dan Monitoring Kecepatan Motor Induksi Berbasis Programmable Logic Controller (PLC) Dilengkapi Layar Sentuh,” Emit. J. Tek. Elektro, vol. 22, no. 1, pp. 65–72, Mar. 2022, doi: 10.23917/emitor.v22i1.15784.

[15] A. A. K. T. H. S. W. M. D. Indra, “Performansi Pengendalian Kecepatan MotorInduksi Pada Modul PembelajaranBerbasis PLC-PID,” ELECTRICES, 2025.

[16] D. Hendrawati, A. Hakim, B. W. Dionova, A. K. Sulistyo, and M. I. Abdullah, “IoT Enabled Real Time Load Height Monitoring and Control System Using PLC and HMI for Smart Iindustrial,” 2025.

[17] F. Meng, Y. Zhang, and D. Yang, “Design of Communication among Vision System, PLC and Industrial Robot based on Modbus-TCP protocol,” in Journal of Physics: Conference Series, Institute of Physics Publishing, Aug. 2019. doi: 10.1088/1742-6596/1288/1/012083.

[18] K. Kostenko, “Real-time Communication between Robot PLC and PC over Ethernet-based Protocols,” 2021.

[19] S. A. Khaidir Yusuf, “Perancangan Alat Pengukur Debit Air Berbasis Arduino UNO Sebagai Antisipasi Pemborosan AirDi Sektor Pertanian,” J. Energi Elektr., 2019.

[20] M. Abotaleb, J. Mindykowski, B. Dudojc, and R. Masnicki, “Case-Study-Based Overview of Methods and Technical Solutions of Analog and Digital Transmission in Measurement and Control Ship Systems,” Sep. 01, 2022, MDPI. doi: 10.3390/s22186931.

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Published

28/09/2025

How to Cite

[1]
“Rancang Bangun Purwarupa Kontrol dan Monitoring Kecepatan Motor Induksi Menggunakan Aplikasi SCADA Haiwell Cloud”, jse, vol. 10, no. 4, Sep. 2025, Accessed: Oct. 26, 2025. [Online]. Available: https://jse.serambimekkah.id/index.php/jse/article/view/1123

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