Analisis Aliran Daya Pada Sistem IEEE 26 Bus Modifikasi

Authors

  • Alfian Rachmadana Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman
  • Aldi Muhammad Hidayat Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman
  • MuhammadJodiansyah Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman
  • Rizky Nurkholas Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman
  • Yudistira Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman
  • Bayu Dwi Prabowo Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman
  • Muslimin Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman

DOI:

https://doi.org/10.31849/x1pfqh51

Keywords:

Power flow study, Power system, Newton-Raphson

Abstract

Power flow analysis is essential, especially in electrical network systems, to determine the power capacity of an electrical energy system that has reached its specified limits. A power flow study is an analysis of electrical power flow within an electrical system. The research method employs the IEEE power flow method with a modified 26-bus system, analyzing power losses and voltage drops at each busbar in the circuit using the Newton-Raphson method and MATLAB R2017a software. This study aims to analyze the power flow values, power losses, and voltage drops in a modified IEEE 26-bus system using MATLAB software with the Newton-Raphson method. The results of the discussion and simulation show that the total active power and reactive power are 126.3 MW and 637 MVR, respectively, and the active power and reactive power of the generator are 1292.715 MW and 677.251 MVAR, respectively. The largest voltage drop occurs on line 16 to 17 with a voltage drop of 10.04%, and the lowest on line 17 to 21 with a voltage drop of -8.29%. According to SPLN standards, the voltage drop has a tolerance of +5% and a minimum of -10%. Therefore, it can be concluded that the analysis of the modified 26-bus IEEE power system does not comply with PLN standards, specifically on line 16 to 17. The simulation results show the largest active power loss of 6,221 MW and reactive power loss of 25,132 MVAR. .

Author Biography

  • Alfian Rachmadana, Program Studi Teknik Elektro, Fakultas Teknik, Universitas Mulawarman

     

     

References

[1] Dwi Sulistiyono, 2011, Perbandingan Metode Gauss-Seidel, Metode Newton Raphson dan Metode Fast Decoupled dalam Solusi Aliran Daya.

[2] Emmy Hosea dan Yusak Tanoto, 2004, Perbandingan Analisa Aliran Daya dengan Menggunakan Metode Algoritma Genetika dan Metode Newton Raphson.

[3] Josafat Mangundap, Sartje Silimang dan Hans Tumaliang, 2017, Analisa Rugi-Rugi Daya Jaringan Distribusi di PT. PLN (PERSERO) Area MANADO.

[4] A. Kadir, “Distribusi dan Utilisasi Tenaga Listrik,” Distribusi dan Utilisasi Tenaga Listrik, vol. 53, no. 9, p. 78, 2000.

[5] A. Tanjung, “Analisis Sistem Distribusi 20 kV untuk Memperbaiki Kinerja dan Keandalan Sistem Distribusi Menggunakan Electrical Transient Analisys Program,” Seminar Nasional Teknologi Informasi Komunikasi dan Industri 4, p. ISSN :2085-9902, 2012

[6] Aslimeri, Ganefri, and Z. Hamdi, Teknik Transmisi Tenaga Listrik. Jakarta: Departemen Pendidikan Nasional, 2008

[7] C. Cekdin and T. Barlian, Transmisi Daya Listrik. Palembang: CV. Andi Offset, 2013.

[8] D. A. Arismunandar and D. S. Kuwahara, Buku Pegangan Teknik Tenaga Listrik Jilid II. Jakarta: PT. Pradnya Paramita, 2004.

[9] Dasman and Handayani, “Evaluasi Keandalan Sistem Distribusi 20 Kv Menggunakan Metode Saidi,” Jurnal Teknik Elektro ITP, vol. 6, no. 2, p. 173, 2017.

[10] E. S. Yudha, M. Haddin, and M. Ismail, “Simulasi Perbaikan Drop Tegangan Dengan Kapasitor,” pp. 1–17.

[11] PT. (Persero) PLN, Buku Pedoman Pemeliharaan Kapasitor. Jakarta: PT. PLN (Persero), 2014.

[12] PT. (Persero) PLN, Buku Pedoman Pemeliharaan Transformator Tenaga. Jakarta: PT. PLN (Persero), 2010.

[13] R. B. Laginda, H. Tumaliang, and S. Silimang, “Perbaikan Kualitas Tegangan Pada Jaringan Distribusi Primer 20 KV Di Kota Tahuna,” Jurnal Teknik Elektro dan Komputer, vol. Vol.7 No.2, pp. 93–102, 2018.

[14] S. Sivanagaraju and S. Satyanarayana, Electric Power Transmission and Distribution. New Delhi: Pearson Education, 2009.

[15] Suhadi and T. Wrahatnolo, Teknik Distribusi Tenaga Listrik Jilid 1. Jakarta: Departemen Pendidikan Nasional, 2008.

[16] T. Gonen, Electric Power Distribution System Engineering. California: Mcgraw Hill College, 1985.

[17] T. Gonen, Electric Power Distribution System Engineering Second Edition. California: CRC Press, 2008.

[18] T. S. Prof. Ir. M. S. Hutauruk, Transmisi Daya Listrik. Jakarta: Erlangga, 1996.

[19] W. D. J. Stevenson, Analisa Sistem Tenaga. Malang: Universitas Brawijaya, 1983.

[20] Z. Tharo, A. Tarigan, S. Anisah, and K. T. Yuda, “Penggunaan Kapasitor Bank Sebagai Solusi Drop Tegangan Pada Jaringan 20 kV,” Semnastek USU, pp. 82–86, 2020

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Published

2025-06-30

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Articles

How to Cite

[1]
“Analisis Aliran Daya Pada Sistem IEEE 26 Bus Modifikasi”, SainETIn, vol. 9, no. 2, pp. 76–82, Jun. 2025, doi: 10.31849/x1pfqh51.