RDT-RT Three-Phase Smart and Powerful Digital Voltage Stabilizer: 3-Phase Voltage Stabilizer for Industry
DOI:
https://doi.org/10.61536/ambidextrous.v3i02.350Keywords:
AVR, Industri, PID Controller PWM, RDT-RT, Stabilizer TeganganAbstract
Voltage instability in industrial power distribution systems causes equipment damage, operational inefficiency, and production downtime. This research evaluated the Smart Powerful Digital Stabilizer RDT-RT three-phase system implementing digital Automatic Voltage Regulator technology. Using quantitative experimental methodology, researchers tested three RDT-RT units across twelve operational scenarios generating over 300 measurements. The investigation employed high-speed oscilloscopes, power quality analyzers, and precision voltage sensors to measure output voltage stability, transient settling time, and power conversion efficiency. Static testing across input voltage range 200V to 500V demonstrated mean output accuracy of 379.8V with ±1.2V standard deviation, maintaining ±5% tolerance. Dynamic testing showed settling time below 1.3 seconds following load transients, compared to 5 to 10 seconds for conventional systems. Harmonic distortion measured 2.8 percent THD, compliant with IEEE 519 standards. Average power conversion efficiency reached 86.7 percent across operational range. Results demonstrate that digital microcontroller-based PID control combined with PWM switching substantially improves voltage regulation performance. The RDT-RT technology provides superior power quality and equipment protection essential for Industry 4.0 manufacturing environments requiring real-time process control.
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Adel, F., Elzamzamy, T. A., Abdelwahab, S., & Rashed, H. (2023). A single-phase direct buck-boost AC–AC converter with step-up step-down voltage capability. Scientific Reports, 13, 9571. https://doi.org/10.1038/s41598-023-35770-9
Ahmed, B. S., Sahib, M. A., Gambardella, L. M., Afzal, W., & Zamli, Z. (2016). Optimum design of PI λ D μ controller for an automatic voltage regulator system using combinatorial test design. PLOS ONE, 11(10), e0166150. https://doi.org/10.1371/journal.pone.0166150
Alkahtani, A., Hossain, M. J., Soomro, A. M., Memon, Z. A., & Uqaili, M. A. (2024). A comprehensive study of voltage swell and sag phenomena in power distribution systems: Characteristics, causes, effects, and mitigation strategies. Journal of Electrical Systems, 20(3), 7327–7340.
Cresswell, J. W. (2023). Research design: Qualitative, quantitative, and mixed methods approaches (5th ed.). SAGE Publications.
Emzir. (2023). Metodologi penelitian: Pendekatan kuantitatif dan kualitatif. Rajagrafindo Persada.
Francis, S., Kesavan, R., & Varghese, R. (2025). Recent advances in energy-efficient fractional-order PID controllers for industry 4.0 automation systems. International Journal of Research in Computer Science, 5(2), 47–65. https://doi.org/10.26480/ijrcs.02.2025.47.65
Ghazzali, M., Haloua, M., & Giri, F. (2022). Fixed-time control of voltage dynamics of three-phase voltage source inverters with LC output filter. International Journal of Power Electronics and Drive Systems, 13(3), 1624–1635. https://doi.org/10.11591/ijpeds.v13.i3.pp1624-1635
Gopi, P., Ramachandaramurthy, V. K., Padmanaban, S., & Holm-Nielsen, J. B. (2024). Performance and robustness analysis of V-Tiger PID controller for automated voltage regulator. Nature Scientific Reports, 14, 8891. https://doi.org/10.1038/s41598-024-58481-1
Habbati, B., & Moulay, F. (2024). Comparative study of the total harmonic distortion voltage evaluation for a multilevel inverter. Journal of Electrical Systems, 20(6), 2907–2925.
Hernández-Mayoral, M. H., López-Santos, O., & Martínez-Salamanca, G. V. (2023). Effects of voltage swell and sag events on power distribution systems and industrial operations. Journal of Electrical Systems, 20(11s), 960–972.
Mayoral, H., Sánchez, R., & Gómez, P. (2023). Voltage sag characteristics in industrial power distribution networks. IEEE Transactions on Power Delivery, 38(4), 2847–2856.
Mohammed, I. K., Salih, S. Q., & Diedam, H. (2024). Design and simulation of an analog robust control for a buck converter system. Journal of Robotics and Control, 5(4), 621–635. https://doi.org/10.18196/jrc.v5i4.22408
Panggabean, A. K. M. D., Gunawan, H., & Dalimunthe, M. E. (2025). PID controller system analysis on automatic voltage regulator (AVR) for regulating excitation voltage of a 3-phase synchronous generator. Jurnal Multidisiplin Sahombu, 5(04), 1041–1050.
Prasetyo, H., Wijaya, P., Santoso, B., & Kusuma, R. (2024). Design of IoT enabled three-phase power quality monitoring unit for industrial applications. Jurnal Konstellasi, 13(2), 185–198.
Rene, E. A., Chen, S. S., Kumar, A., & Govind, R. (2025). Modeling and control of automatic voltage regulation for a three-phase power system. Energy Reports, 13, 102847. https://doi.org/10.1016/j.egyr.2025.102847
Salih, S. Q., Al-Zuhairy, Z. H., & Dosarhan, N. A. (2024). Enhanced total harmonic distortion optimization in cascaded H-bridge multilevel inverter using direct modulation optimization algorithm. Journal of Robotics and Control, 5(3), 515–530. https://doi.org/10.18196/jrc.v5i3.23548
Soomro, A. M., Memon, Z. A., Uqaili, M. A., Alkahtani, A., & Hossain, M. J. (2024). A comprehensive study of voltage swell and sag phenomena in power distribution systems: Characteristics, causes, effects, and mitigation strategies. Journal of Electrical Systems, 20(3), 7327–7340.
Sudaryono. (2023). Metodologi penelitian kuantitatif: Aplikasi praktis dalam penelitian bisnis dan pendidikan. ALFABETA.
Sugiyono. (2023). Metode penelitian kuantitatif, kualitatif, dan R&D (3rd ed.). ALFABETA.
Sutikno, T., Purnama, H. S., Aprilianto, R. A., Jusoh, A., Widodo, N. S., & Santosa, B. (2022). Modernisation of DC-DC converter topologies for solar energy harvesting applications: A review. Indonesian Journal of Electrical Engineering and Computer Science, 28(3), 1845–1872. https://doi.org/10.11591/ijeecs.v28.i3.pp1845-1872
Veizaga, V. I., Correa, J. F., & Martínez, R. E. (2023). Long-term effects of voltage fluctuations on electrical equipment reliability. IEEE Access, 11, 89456–89472. https://doi.org/10.1109/ACCESS.2023.3305876
Yiyen, C. (2025). Top 10 automatic voltage regulators for 2023: Energy efficiency and comparative analysis. Journal of Industrial Engineering, 31(4), 445–467.
Zhang, X., Wang, H., Liu, Y., & Zhang, Q. (2024). Transient response analysis of reset PID control systems. IEEE Transactions on Control Systems Technology, 32(4), 1234–1249.
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Copyright (c) 2025 Rizki Kurniawan Firmansyah, Moh Faiz Rosyidi, Ardian Maulana W.A, Akhmad Faldy Galuh Dwy Alfaris, Muhammad Lhuhuri Mustofani

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