Analisis Performa Rectifier Eaton SC200 pada Sistem Telekomunikasi terhadap Variasi Sumber Daya PLN dan Genset

Authors

  • Ahmad Apandi Universitas Dian Nusantara Jakarta
  • Belinda Ayuningtyas Universitas Dian Nusantara Jakarta

DOI:

https://doi.org/10.69693/ijim.v4i3.1302

Keywords:

Rectifier Eaton SC200, Sistem Telekomunikasi, PLN, Genset, Efisiensi Energi, Kestabilan Daya, Keandalan Sistem

Abstract

Sistem telekomunikasi menuntut ketersediaan layanan yang terus-menerus, sehingga memerlukan sistem catu daya yang andal dan stabil. Penelitian ini bertujuan untuk menganalisis performa rectifier Eaton SC200 dalam sistem telekomunikasi yang dipengaruhi oleh variasi sumber daya listrik utama, yaitu PLN dan genset. Pengujian dilakukan dengan metode eksperimental dan pengukuran langsung terhadap parameter kelistrikan, meliputi efisiensi konversi energi, kestabilan tegangan output, arus beban, serta keandalan sistem saat terjadi perpindahan sumber daya. Hasil penelitian menunjukkan bahwa saat menggunakan sumber PLN dengan tegangan stabil (227,4 – 227,8 VAC), efisiensi konversi energi mencapai rata-rata 94–96%, dengan tegangan output terjaga konstan di 54,1 VDC. Sementara itu, pada penggunaan sumber genset yang memiliki fluktuasi tegangan lebih besar (107,4 – 229,4 VAC), efisiensi sedikit menurun namun masih berada pada kisaran 91–94%, dengan tegangan output tetap terjaga stabil pada rentang 53,90 – 54,24 VDC. Selain itu, sistem baterai cadangan mampu menopang beban sebesar 9 A selama 8–9 jam saat terjadi pemadaman, dan proses perpindahan sumber daya berlangsung aman tanpa gangguan layanan. Berdasarkan hasil tersebut, Eaton SC200 terbukti memiliki performa yang tangguh, efisien, dan andal, sehingga sangat cocok diterapkan pada infrastruktur telekomunikasi yang membutuhkan kestabilan suplai daya dari berbagai sumber.

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References

Agarwal, V. (2023). AC–DC converters (rectifiers). In J. García (Ed.), Encyclopedia of electrical and electronic power engineering (pp. 6–23). Elsevier. https://www.sciencedirect.com/science/article/pii/B9780128212042001562

Agustina, S., Wahab, H., Amri, D., & Mourzade, A. D. (2024). Comparative analysis of a rectifier performance in power generation applications. Jurnal Asiimetrik: Jurnal Ilmiah Rekayasa & Inovasi, 103–112. https://doi.org/10.35814/asiimetrik.v6i1.5807

Ahmed, H., & Çelik, D. (2022). Sliding mode based adaptive linear neuron proportional resonant control of Vienna rectifier for performance improvement of electric vehicle charging system. Journal of Power Sources, 542, Article 231788. https://doi.org/10.1016/j.jpowsour.2022.231788

Cetin, S. (2016). Optimal design methodology of zero-voltage-switching full-bridge pulse width modulated converter for server power supplies based on self-driven synchronous rectifier performance. Journal of Power Electronics, 16(1), 121–132. https://doi.org/10.6113/JPE.2016.16.1.121

Chun, A. C. C., Ramiah, H., & Mekhilef, S. (2022). Wide power dynamic range CMOS RF–DC rectifier for RF energy harvesting system: A review. IEEE Access, 10, 23948–23963. https://doi.org/10.1109/ACCESS.2022.3155240

Firman, M. A., Davan, D. M., & Awanis, H. Z. (2024). Optimasi rectifier untuk meningkatkan kinerja server pada PT Garuda Media Telematika. ELCONIKA: Jurnal Teknik Elektro, 3(1), 15–21. https://doi.org/10.33752/elconika.v3i1.8257

Halimi, M. A., Khan, T., Kishk, A. A., & Antar, Y. M. (2023). Rectifier circuits for RF energy harvesting and wireless power transfer applications: A comprehensive review based on operating conditions. IEEE Microwave Magazine, 24(1), 46–61. https://doi.org/10.1109/MMM.2022.3211594

Kalpana, R., Singh, B., & Bhuvaneswari, G. (2018). Design and implementation of sensorless voltage control of front-end rectifier for power quality improvement in telecom system. IEEE Transactions on Industry Applications, 54(3), 2438-2448. https://doi.org/10.1109/TIA.2018.2790949

Kaluarachchi, A., Warnakulasuriya, K. P., Hughes, D. P., & Dhanapala, V. (2025, May). Novel rectifier technology for power efficiency improvement of telecommunications base stations. In PCIM Conference 2025: International Exhibition and Conference for Power Electronics, Intelligent Motion, Renewable Energy and Energy Management (pp. 2733–2738). VDE.

Khalaf, Q. M., Sali, A., Ismail, A., Ahmad, M. Y., Hussein, Y. S., & Shah, J. A. (2025). Enhancing SWIPT systems: A systematic review of rectifier technologies, efficiency, and integration strategies. IEEE Access, 13, 201802–201831.

Li, X., Wang, K., Zhou, Y., Pan, Y., Meng, F., & Ma, K. (2023). A wide input range all-NMOS rectifier with gate voltage boosting technique for wireless power transfer. IEEE Transactions on Circuits and Systems II: Express Briefs, 70(11), 4023–4027. https://doi.org/10.1109/TCSII.2023.3285620

Nizam, S., & Tanjung, A. (2025). Analisis efisiensi daya listrik pada generator pembangkit listrik tenaga diesel PT. PLN (Persero) ULP Bengkalis Kabupaten Bengkalis. SainETIn: Jurnal Sains, Energi, Teknologi, dan Industri, 10(1), 14-18. https://doi.org/10.31849/eq16g030

Puspasari, D. A., Qomaruddin., & Masing, H. (2025). Analisis pemakaian daya listrik genset berbasis ekonomi teknik PT. Teladan Kutai Timur. MUTIARA: Jurnal Ilmiah Multidisiplin Indonesia, 3(1), 182-200. https://doi.org/10.61404/jimi.v3i1.370

Rzayeva, V. V., Piriyeva, N. M., & Guseynova, I. A. (2024). Analysis of reliability of typical power supply circuits. Reliability: Theory & Applications, 19(3[79]), 173–178. https://doi.org/10.24412/1932-2321-2024-379-173-178

Salam, R. N. R., & Widodo, E. (2024). Periodic maintenance analysis of diesel motor generator set 900 kVA power as backup energy: Analisis pemeliharaan berkala motor diesel generator set daya 900 kVA sebagai energi cadangan. Procedia of Engineering and Life Science, 5, 1-9. https://doi.org/10.21070/pels.v7i0.1597

Saputra, R., Hakim, B. W., & Arifin, A. R. (2025). Analisis dan perancangan rangkaian power supply dengan modifikasi penyearah dioda IN4001 untuk mengatur output tegangan dan arus berdasarkan variasi beban. Journal Electric Field, 2(1), 48–56. https://doi.org/10.63440/jef.v2i1.105

Stoykov, I., Mihaylov, G., Hristova, T., & Stoyanov, I. (2025, November). Study of power supplies used in telecommunication systems. In 2025 10th International Conference on Energy Efficiency and Agricultural Engineering (EE&AE) (pp. 1–5). IEEE. https://doi.org/10.1109/EEAE65901.2025.11273772

Sudarji, D., & Mu'ammar, R. (2025). Analisis kinerja baterai terhadap backup time sistem AC UPS. EEICT (Electric, Electronic, Instrumentation, Control, Telecommunication), 8(1). https://doi.org/10.31602/eeict.v8i1.18989

Sulaeman, G. P., Ibrahim, I., & Santoso, D. B. (2021). Analisis catu daya no break system perangkat telekomunikasi. Jambura Journal of Electrical and Electronics Engineering, 3(2), 41–50. https://doi.org/10.37905/jjeee.v3i2.10318

Sutrisno, Y., & Setyowati, A. (2021). Analisis kapasitas baterai dan converter (rectifier) sebagai catuan cadangan pada perangkat telekomunikasi. Jurnal Pendidikan Vokasional Teknik Elektronika, 4(1), 32–40. https://doi.org/10.21009/jvote.v4i1.39437

Tahir, H., Abdussamad, S., & Nasibu, I. Z. (2021). Rancangan catu daya cadangan SRAM pada Z80 trainer. Jambura Journal of Electrical and Electronics Engineering, 3(1), 19–22. https://doi.org/10.37905/jjeee.v3i1.8338

Tobi, D. W., Harling, & V. N. V. (2018). Studi optimalisasi kualitas sistem catu daya terintegrasi pada PT Telkom Stasiun Bumi Sorong. Jurnal Electro Luceat, 4(2).

Yang, Y., Pian, Y., & Liu, Q. (2019). Design of energy harvester using rotating motion rectifier and its application on bicycle. Energy, 179, 222–231. https://www.sciencedirect.com/science/article/abs/pii/S0360544219308990

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Published

2026-07-09

How to Cite

Apandi, A., & Ayuningtyas, B. (2026). Analisis Performa Rectifier Eaton SC200 pada Sistem Telekomunikasi terhadap Variasi Sumber Daya PLN dan Genset. Indonesian Journal of Innovation Multidisipliner Research, 4(3), 1323–1342. https://doi.org/10.69693/ijim.v4i3.1302