Desain dan Implementasi Sistem Instrumentasi Aliran Fluida Berbasis Supervisory Control And Data Acquisition (SCADA) dan dan Programmable Logic Controller (PLC)
DOI:
https://doi.org/10.15575/istek.v14i2.2575Keywords:
Instrumentation System, Pressure Control, PLC, SCADA , HMI, Industrial AutomationAbstract
One of the main challenges in the development of instrumentation systems for industrial fluid flow processes is the requirement for real-time pressure monitoring and control to prevent abnormal conditions that may lead to operational failures. This study aims to design and develop an instrumentation system capable of performing monitoring, control, and early warning functions through the integration of a pressure transmitter, Haiwell AC12M0R PLC, HMI, and SCADA using TCP/IP and Wi-Fi communication protocols. The system design includes hardware development, ladder diagram programming, and configuration of a cloud-connected HMI–SCADA interface. System testing was conducted by varying pressure setpoints to simulate different operating conditions. The test results indicate that the system operates as designed, as evidenced by alarm activation at a pressure of 6 bar, proportional opening of the Pressure Control Valve (PCV) when the pressure exceeds the 5 bar setpoint, and activation of safety functions under high-high pressure conditions at 9 bar, where the system triggers an alarm, closes the Shut Down Valve (SDV), and automatically stops the pump. The PCV response time was recorded at 0.1–0.2 seconds, while the SDV fully closed within 5–6 seconds. All process data can be monitored in real time through the HMI and cloud-integrated SCADA system, enabling remote monitoring via smartphone. Overall, the developed instrumentation system prototype functions in accordance with the control logic and performs reliably under the simulated operational scenarios.
References
[1] M. Z. Mahfud, D. Satrijo, and T. Prahasto, "Desain Dan Analisis Tegangan Sistem Perpipaan Main Steam (High Pressure) Pada Combined Cycle Power Plant," Jurnal Teknik Mesin, vol. 4, no. 1, pp. 79-88, Jan. 2016. https://ejournal3.undip.ac.id/index.php/jtm/article/view/12839.
[2] BNPB. (n.d.). Kebakaran Depo Pertamina Plumpang Sitrep I Sabtu, 4 Maret 2023 Sitrep #1 Kebakaran Depo Pertamina Plumpang. https://megapolitan.kompas.com/read/2023/03/04/19194131/kebakaran-depo-pertamina-plumpang-bnpb-18-orang-masih-dicari?page=1.
[3] Z. Hasanah Siregar and A. Hasibuan, “Tanggap Darurat K3 Terhadap Kebakaran Di Industri Migas : Literature Review,” Gudang J. Multidisiplin Ilmu, vol. 2, pp. 134–142, 2024, doi: https://doi.org/10.59435/gjmi.v2i6.505.
[4] J. Jalaluddin, S. Akmal, N. ZA, and I. Ishak, “Analisa Profil Aliran Fluida Cair Dan Pressure Drop Pada Pipa L Menggunakan Metode Simulasi Computational Fluid Dynamic (Cfd),” J. Teknol. Kim. Unimal, vol. 8, no. 1, p. 97, 2019, doi: 10.29103/jtku.v8i1.3396.
[5] A. Afrizal, U. A. Ahmad, and J. S. Wicaksana, “Desain Dan Implementasi Alat Deteksi Kebocoran Pipa Air Menggunakan Sensor Pressure Transmitter Studi Kasus Pdam Kabupaten Madiun,” eProceedings Eng., vol. 9, no. 3, pp. 966–973, 2022, [Online]https://openlibrarypublications.telkomuniversity.ac.id/index.php/engineering/article/view/17931/17565%0.
[6] D. R. Sirait and V. F. R. B. Tarigan, “Rancang bangun sistem aliran fluida menggunakan water pump dan float switch tangki berbasis PLC,” Konsep Konf. Nas. Soc. dan Eng. Polmed, vol. 5, no. 1, pp. 947–954, 2025, [Online].https://ojs.polmed.ac.id/index.php/Konsep2021/article/view/1850.
[7] V. Ray, Sonhaji, and K. Elly, “Prototype Steam Plant sebagai Penyedia Sumber Daya Listrik pada Sistem Vessel To Grid (V2G)”, Jurritek, vol. 4, no. 3, pp. 440–461, Sep. 2025. https://doi.org/10.55606/jurritek.v4i3.6721.
[8] X. Zhang et al., “Numerical and Experimental Study on the Shutdown Transition Process of a Large Axial Flow Pump System Focusing on the Influence of Gate Control,” J. Mar. Sci. Eng., vol. 11, no. 2, 2023, doi: https://doi.org/10.3390/jmse11020280.
[9] B. Mulyati, “Rancang Bangun Alat Pengukur Kecepatan Aliran Air Menggunakan Water Flow Sensor Berbasis Arduino Uno,” J. Inform. Teknol. dan Sains, vol. 2, no. 1, pp. 1–11, 2023, doi: 10.56244/formateks.v2i1.721.
[10] I. M. Madeira, M. A. R. Lucumi, and H. R. B. Orlande, “State estimation problem for the detection of valve closure in gas pipelines,” Inverse Probl. Sci. Eng., vol. 29, no. 12, pp. 2186–2206, 2021, doi: 10.1080/17415977.2021.1910682.
[11] R. P. H. Wibowo and A. Adriansyah, “Operation Analysis of Automation System Terminal Implementation in LPG Terminal,” 2020 2nd Int. Conf. Broadband Commun. Wirel. Sensors Powering, BCWSP 2020, pp. 42–46, 2020, doi: 10.1109/BCWSP50066.2020.9249451.
[12] E. A. Z. Hamidi, T. Gustiana, M. R. Effendi, and P. A. M. Hambali, “Design and Implementation Supervisory Control and Data Acquisition (SCADA) of Flocculation Process of Water Treatment Plant (WTP) Using Raspberry Pi,” Proceeding 2019 5th Int. Conf. Wirel. Telemat. ICWT 2019, pp. 1–7, 2019, doi: 10.1109/ICWT47785.2019.8978240.
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