Power Quality Analysis of a 20kV Primary Distribution Line Using ETAP Power Station 12.6.0 at Sidikalang Substation

Authors

  • Arnawan Hasibuan
  • Rizki Yaldi Universitas Malikussaleh
  • Muchlis Abdul Muthalib Universitas Malikussaleh
  • Muhammad Universitas Malikussaleh
  • Dedi Fariadi Universitas Malikussaleh

Keywords:

power distribution, ETAP, power quality, substation, energy efficiency

Abstract

The rapid economic growth and population increase in Indonesia have significantly raised the demand for electrical energy. The electricity distribution system, having the highest rate of disruptions among power system components, has become the primary focus for improvement efforts. This study aims to evaluate the quality of electricity distribution lines at the Sidikalang Substation using ETAP Power Station 12.6.0. The analysis is crucial for understanding power usage efficiency, identifying potential disturbances, and evaluating distribution system performance. The main challenge lies in effectively evaluating distribution line quality, involving the monitoring of critical parameters such as voltage, current, and power factor. Utilizing ETAP Power Station 12.6.0 enables in-depth analysis, aids decision-making, and facilitates future planning. This research draws upon scientific literature and industry guidelines to provide a strong theoretical foundation. The study's findings are expected to contribute to enhancing the quality and reliability of electricity distribution systems in Indonesia, thereby supporting the nation's sustainable development goals in the energy sector.

References

[1] A. Hasibuan and W. V. Siregar, “Prakiraan Kebutuhan Energi Listrik Kota Subulussalam Sampai Tahun 2020 Menggunakan Metode Analisis Regresi,” RELE (Rekayasa Elektr. dan Energi) J. Tek. Elektro, vol. 1, no. 2, pp. 57–61, 2019, doi: 10.30596/rele.v1i2.3013.

[2] R. Harahap, S. A. Siregar, S. Hardi, and S. HS, “Analisis Sistem Jaringan Distribusi 20 KV Penyulang SB.02 Pada PT. PLN (Persero) ULP Sibolga Kota Menggunakan Metode Section Technique dan Failure Mode Effect Analysis (FMEA),” J. Electr. Technol., vol. 7, no. 2, pp. 87–95, 2022.

[3] F. Funan and W. Sutama, “Evaluasi Keandalan Sistem Distribusi Tenaga Listrik Berdasarkan IndeksKeandalan SAIDI dan SAIFI pada PT PLN (PERSERO) RayonKefamenanu,” Junal Ilm. TELSINAS, vol. 3, no. 1, pp. 32–36, 2020.

[4] A. Hasibuan, M. Isa, M. I. Yusoff, and S. R. A. Rahim, “Analisa Aliran Daya Pada Sistem Tenaga Listrik Dengan Metode Fast Decoupled Menggunakan Software Etap,” RELE (Rekayasa Elektr. dan Energi) J. Tek. Elektro, vol. 3, no. 1, pp. 37–45, 2020, doi: 10.30596/rele.v3i1.5236.

[5] N. J. Hontong, M. Tuegeh, and L. S. Patras, “Analisa Rugi Rugi Daya Pada Jaringan Distribusi di PT. PLN Palu,” J. Tek. Elektro dan Komput., vol. 4, no. 1, pp. 64–71, 2015.

[6] E. Syahputra, Z. Pelawi, and A. Hasibuan, “Analisis Stabilitas Sistem Tenaga Listrik Menggunakan Berbasis Matlab,” Sisfo J. Ilm. Sist. Inf., vol. 2, no. 2, 2018.

[7] Y.- Marniati, “Analisis Penambahan Jurusan Gardu Distribusi I.598 Pada Penyulang Apel Pt.Pln Rayon Rivai Palembang,” J. Tekno, vol. 19, no. 2, pp. 32–48, 2023, doi: 10.33557/jtekno.v19i2.1911.

[8] A. Hasibuan, A. Bintoro, S. Salahuddin, and R. D. Meutia, “Reliability Distribution System on Load Break Switch Addition at PT. PLN (PERSERO) ULP Langsa City Using RIA-SECTION Technique Combined Method on ETAP 14.1. 0,” Andalasian Int. J. Appl. Sci. Eng. Technol., vol. 2, no. 2, pp. 57–64, 2022.

[9] A. M. Siregar, B. Badriana, H. M. Yusdartono, and A. Hasibuan, “Perbaikan Nilai Susut Teknis Jaringan Tegangan Menengah Pada Feeder K.H. 05 (Case Study PLN ULP Kruenggukuh),” J. Energi Elektr., vol. 12, no. 1, p. 24, 2023, doi: 10.29103/jee.v12i1.11708.

[10] A. Hasibuan and E. S. Nasution, “Analisis Rugi-Rugi Daya Pada Saluran Transmisi Tegangan Tinggi 150kV Rantauprapat- Padang Sidempuan,” J. Energi Elektr., vol. 5, no. 2, p. pp 49-54, 2016.

[11] S. T. Umar, “Analisa Rugi-Rugi Daya Pada Saluran Transmisi Tegangan Tinggi 150kv Pada Gardu Induk Jajar-Gondangrejo,” 2017, Universitas Muhammadiyah Surakarta.

[12] G. Musyahar, “Kualitas Listrik Dan Perbaikan Faktor Daya Pada Beban Listrik Rumah Tangga Menggunakan Kapasitor,” J. Cahaya Bagaskara, vol. 2, no. 1, pp. 1–5, 2017.

[13] M. Syakirman, A. Bintoro, and A. Hasibuan, “Simulasi Perbaikan Tegangan Dengan Pemasangan Turbin Angin Pada Sistem Distribusi Radial Kota Lhokseumawe Menggunakan ETAP,” J. Energi Elektr., vol. 7, no. 2, pp. 1–5, 2018.

[14] D. Wahyudi, “Implementasi Unified Power Flow Controller (UPFC) Untuk Meningkatkan Kestabilan Tegangan Dan Meminimalkan Rugi-Rugi Sistem Pada Subsistem Ngimbang 150 kV,” 2017, Institut Teknologi Nasional Malang.

[15] G. Albaroka and G. Widodo, “Analisis Rugi Daya Pada Jaringan Distribusi Penyulang Barata Jaya Area Surabaya Selatan Menggunakan Software Etap 12.6,” J. Tek. elektro, vol. 6, no. 2, 2017.

[16] A. Marina, S. I. Wahjono, and A. Suarni, Sistem informasi akuntansi: teori dan praktikal. UMSurabaya Publishing, 2018.

[17] L. L. Putri, “OPTIMALISASI PMT KOPEL UNTUK MENGURANGI DROP TEGANGAN PADA SAAT PENGALIHAN BEBAN TRAFO BERBASIS ARDUINO MEGA 2560 DENGAN TAMPILAN HUMAN MACHINE INTERFACE (HMI),” 2018, undip.

[18] A. Hasibuan, F. Dani, I. M. A. Nrartha, and others, “Simulation and analysis of distributed generation installation on a 20 kV distribution system using ETAP 19.0,” Bull. Comput. Sci. Electr. Eng., vol. 3, no. 1, pp. 18–29, 2022.

[19] F. D. Safitri, “Simulasi Penempatan Transformator Pada Jaringan Distribusi Berdasarkan Jatuh Tegangan Menggunakan Etap Power Station 12.6.0,” J. Edukasi Elektro, vol. 4, no. 1, pp. 12–24, 2020, doi: 10.21831/jee.v4i1.29315.

[20] D. Siska, K. Sari, A. Hamzah, and D. Y. Sukma, “Perbaikan Faktor Daya Otomatis Berbasis Smart Relay Pada Jaringan Tegangan Rendah Satu Fasa,” Repository, vol. 4, no. 3, pp. 1–7, 2009.

[21] T. Gonen, Electric power distribution engineering. CRC press, 2015.

[22] F. Dani, A. Hasibuan, M. J. Asran, and I. M. A. Nrarta, “Simulasi dan Analisa Pemasangan Distributed Generation Pada Sistem Distribusi 20 KV Menggunakan ETAP 19.0,” no, vol. 72, pp. 443–454, 2022.

[23] M. Mudjiono, I. Ridzki, and P. Surya, “Aplikasi Particle Swarm Optimization Pada Pemasangan Kapasitor Bank Pada Jaringan Distribusi,” ELPOSYS J. Sist. Kelistrikan, vol. 8, no. 3, pp. 65–71, 2021, doi: 10.33795/elposys.v8i3.81.

[24] A. T. de Almeida, J. A. C. Fong, and F. J. T. E. Ferreira, “Energy-Efficient Industrial Motor-Driven Systems and Standards Toward Net Zero Carbon,” in 2024 IEEE/IAS 60th Industrial and Commercial Power Systems Technical Conference (I&CPS), IEEE, 2024, pp. 1–10.

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Published

2025-01-02

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