Analisis Keandalan Trafo 2000 kVA dan Panel kubikel 20 kV melalui Preventive Maintenance PT Surya Toto Indonesia Tbk

Authors

  • Yuninda Triyatne Universitas Sultan Ageng Tirtayasa
  • Didik Aribowo Universitas Sultan Ageng Tirtayasa

DOI:

https://doi.org/10.37859/jst.v12i2.10441
Keywords: System reliability, distribution transformer, cubicel panel

Abstract

Electrical distribution systems constitute vital infrastructure in manufacturing operations requiring high reliability levels to ensure production continuity. This study evaluates the performance of a 2000 kVA transformer and 20 kV cubicle panel at PT Surya Toto Indonesia, Tbk through reliability parameter analysis based on preventive maintenance strategies. A quantitative descriptive method was applied by collecting operational data during July-August 2025 covering 1,464 operating hours. Measured parameters included oil temperature, oil level, input/output voltage, load current, along with failure documentation and repair duration. Reliability analysis employed Mean Time Between Failure (MTBF), Mean Time To Repair (MTTR), and Availability calculations following IEEE Std 493-2017 standards. Research findings demonstrate the transformer achieved MTBF of 360 hours, MTTR of 4.5 hours, and availability of 98.8%, while the cubicle panel obtained MTBF of 292.8 hours, MTTR of 5 hours, and availability of 98.3%. Both availability values exceed Indonesian manufacturing industry standards (>95%) and approach world-class manufacturing category (>98%). Scheduled preventive maintenance programs encompassing daily inspections, weekly, monthly, and annual maintenance proved effective in reducing failure frequency. The study recommends implementing IoT-based condition monitoring and SCADA system integration to enhance reliability toward a 99% target.

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Author Biographies

Yuninda Triyatne, Universitas Sultan Ageng Tirtayasa

Pendidikan Vokasional Teknik Elektro

Didik Aribowo, Universitas Sultan Ageng Tirtayasa

Pendidikan Vokasional Teknik Elektro

References

M. Ikhsan, H. Abrianto, and A. Gultom, “Studi Meminimalisir Beban Kapasitif Sistim Tenaga Listrik Pada Panel Distribusi Gedung X di Jakarta,” vol. 5, no. 20, pp. 4146–4162, 2025.

N. F. Fatma and D. E. M. Putra, “Usulan Perbaikan Pada Penerapan Sistem Manajemen Keselamatan Dan Kesehatan Kerja Di Pt. Surya Toto Indonesia Tbk Divisi Sanitary Dengan Metode Hira Dan Fta,” J. Ind. Manuf., vol. 6, no. 1, p. 27, 2021, doi: 10.31000/jim.v6i1.4116.

B. Londong, A. Djohar, W. Ode Zulkaidah, W. Ode Siti Nur Alam, and M. Nadzirin Anshari Nur, “Analisis Sistem Sinkronisasi Generator 2×2 Mw Pada Bandar Udara Haluoleo Kendari,” J. Fokus Elektroda, vol. 07, no. 04, pp. 273–282, 2022, [Online]. Available: https://elektroda.uho.ac.id/

Y. Igirisa, Y. Mohamad, and A. I. Tolago, “Volume 3 Nomor 2 Juli 2021 Analisis Perkiraan Umur Trafo Tenaga 150kV Di GI Isimu,” Jambura J. Electr. Electron. Eng., vol. III, no. 2, pp. 101–108, 2021.

A. Zuroida, Galuh Prawetri Citra Handani, Hanifiyah Darna Fidya Amaral, Rohmanita Duanaputri, and Bayu Prasetyo, “Evaluasi Kapasitas Genset Sebagai Sistem Back-Up Energi Listrik di Gedung Sekretariat Daerah,” Elposys J. Sist. Kelistrikan, vol. 12, no. 1, pp. 37–42, 2025, doi: 10.33795/elposys.v12i1.6837.

N. Naibaho, M. Yoverly, A. Mustika, and G. Residence, “Analisa Perhitungan Kebutuhan Genset Stamford 670 Kva Pada Apartemen Mustika Golf Residence,” J. Elektro, vol. 10, no. 1, pp. 11–19, 2022.

I. Ipniansyah, B. Bustani, R. A. Susilo, S. Djalil, Q. Qomaruddin, and A. Arbain, “Energize Distribution Transformer 1 at Electrical Engineering Workshop State Polytechnic of Samarinda,” Int. J. Curr. Sci. Res. Rev., vol. 07, no. 11, 2024, doi: 10.47191/ijcsrr/v7-i11-32.

A. T. Ramadhan, “Evaluation Analysis of Generator Capacity As An Electrical Power Back-Up System In The Pln Ulp Lambaro Building,” pp. 365–372.

N. Hafiizh, H. Hermawan, and B. Winardi, “Perencanaan Setting Relay Arus Lebih (Ocr) Dan Relay Arus Lebih Berarah (Docr) Pada Jaringan Tegangan Menengah 20 Kv Feeder a – L1 Ps 2, Terminal 1 Bandara Soekarno-Hatta,” Transient, vol. 7, no. 1, p. 166, 2018, doi: 10.14710/transient.7.1.166-173.

Epiwardi, Ruwahyoto, and Heri sungkowo, “Perencanaan Dan Analisis Kelayakan Investasi Proyek Pemasangan Kapasitor Bank Pada Instalasi Pemanfaatan Energi Listrik,” J. Tek. Ilmu Dan Apl., vol. 9, no. 1, pp. 77–82, 2021, doi: 10.33795/jtia.v9i1.16.

H. Gillbert and R. Hidayat, “Design of a backup voltage supply in a medium-voltage cubicle control panel circuit when a blackout occurs from PLN,” JEEE-U (Journal Electr. Electron. Eng., vol. 6, no. 1, pp. 1–7, 2022, doi: 10.21070/jeeeu.v6i1.1414.

A. R. Tinofa and A. Goeritno, “Kriteria Laik Fungsi Sistem Kelistrikan Untuk Bangunan Bertingkat Pada Gedung Asrama Sekolah Tinggi Transportasi Darat,” JuTEkS (Jurnal Tek. Elektro dan Sains), vol. 9, no. 1, 2022, doi: 10.32832/juteks.v9i1.13499.

A. N. Achadiyah, N. D. Irawan, and Y. D. Y. Bramasta, “REMOTE TERMINAL UNIT (RTU) SCADA PADA KUBIKEL TEGANGAN MENENGAH 20kV,” Metrotech (Journal Mech. Electr. Technol., vol. 1, no. 1, pp. 1–7, 2022, doi: 10.33379/metrotech.v1i1.947.

S. Samsurizal and B. Hadinoto, “Studi Analisis Dampak Overload Transformator Terhadap Kualitas Daya Di PT. PLN(Persero) Up3 Pondok Gede,” Kilat, vol. 9, no. 1, pp. 136–142, 2020, doi: 10.33322/kilat.v9i1.784.

Adriyansah, Mappalotteng Muis Abdul, and Rahman Suhardi Edi, “Analisis Transformator Sisipan Pada Uprating Transformator Dalam Mengatasi Overload Di Pt. Pln Ulp Mattoanging Analysis of Insert Transformers on Uprating Transformers in Overloading Overload At Pt. Pln Ulp Mattoanging,” J. Media Elektr., vol. 19, no. 3, pp. 2721–9100, 2022.

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Published

2025-12-17

How to Cite

[1]
Y. Triyatne and D. . Aribowo, “Analisis Keandalan Trafo 2000 kVA dan Panel kubikel 20 kV melalui Preventive Maintenance PT Surya Toto Indonesia Tbk”, JST, vol. 12, no. 2, pp. 299–308, Dec. 2025.

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Research Article