Load Flow Analysis After the Entry of Renewable Power Plants in the Sulselrabar System

Authors

  • Muhammad Ruswandi Djalal Department of Mechanical Engineering, Energy Generation Study Program, State Polytechnic of Ujung Pandang
  • Makmur Saini Department of Mechanical Engineering, Energy Generation Study Program, State Polytechnic of Ujung Pandang
  • A.M Shiddiq Yunus Department of Mechanical Engineering, Energy Conversion Study Program, State Polytechnic of Ujung Pandang

DOI:

https://doi.org/10.18196/jet.v5i2.12897

Keywords:

Power flow, active power, voltage, simulation, software ETAP 16

Abstract

Power flow analysis in an electric power system is an analysis that reveals the performance of an electric power system and the flow of power (active and reactive) for certain conditions when the system is working. The analysis was carried out using the ETAP 16.00 software, the method used was the newton rapshon by taking a case study of normal conditions. From the results of the study, it can be seen that the power flow that occurs in each channel of the 150 kV system in the South Sulawesi system. The amount of active power (MW) that occurs during normal conditions based on the simulation is 1730.87 MW, where the active power is the largest, which is 171 MW from BUS15_TLASA to BUS13_SGMNSA. For the voltage data, there is a slight comparison of the voltage during the simulation compared to the PLN data.

Author Biography

Muhammad Ruswandi Djalal, Department of Mechanical Engineering, Energy Generation Study Program, State Polytechnic of Ujung Pandang

Study Program Energy Engineering, Department of Mechanical Engineering

References

S. D. Auliyani, A. Zulhajji, and A. Imran, " Rugi-rugi daya pada jaringan transmisi sistem interkoneksi Sulselrabar menggunakan program DIgSILENT," Diploma Thesis, Universitas Negeri Makassar, Makassar, 2020.

M. F. S. Muhiddin, "Analisis aliran daya pada sistem jaringan transmisi Sulselbar dengan masuknya transmisi baru dari G.I Punnagaya ke G.I daya baru 275 KV," Universitas Hasanuddin, Makassar, 2019.

M. R. Djalal, M. A. Haikal, T. M. P. N. U. Pandang, and T. E. I. P. Aceh, "Penyelesaian Aliran Daya 37 Bus Dengan Metode Newton Raphson (Studi Kasus Sistem Interkoneksi 150 kV Sulawesi Selatan)," 2014.

M. R. Djalal, A. Imran, and I. Robandi, "Optimal placement and tuning power system stabilizer using participation factor and imperialist competitive algorithm in 150 kV South of Sulawesi system," International Seminar on Intelligent Technology and Its Applications (ISITIA), pp. 147-152, 2015.

A. G. Nigara and Y. Primadiyono, "Analisis aliran daya sistem tenaga listrik pada bagian texturizing di PT Asia Pasific Fibers Tbk Kendal menggunakan Software ETAP Power Station 4.0," 2015.

E. H. Harun, "Analisis tegangan setiap bus pada sistem tenaga listrik Gorontalo melalui simulasi aliran daya," JURNAL SAINSTEK UNIVERSITAS NEGERI GORONTALO, vol. 6, no. 6, 2012.

J. Leda and S. Patabang, "Studi Aliran Daya Pada Sistem Kelistrikan Sulawesi Selatan". 2018.

P. Perinov, U. Situmeang, and M. Monice, "Analisis kontingensi sistem tenaga listrik riau menggunakan metode aliran daya newton raphson," Prosiding Seminar Nasional Pakar, no. Prosiding Seminar Nasional Pakar 2019 Buku I, pp. 1.23.1-1.23.8, 2019.

B. T. Aribowo, S. Setiawidayat, and M. Muksim, "Simulasi dan analisis load flow sistem interkoneksi kalimantan timur menggunakan software ETAP 12.6," presented at the Conference on Innovation and Application of Science and Technology (CIASTECH), Malang, 2018.

M. R. Djalal, H. Setiadi, D. Lastomo, and M. Y. Yunus, "Modal Analysis and Stability Enhancement of 150 kV Sulselrabar Electrical System using PSS and RFB based on Cuckoo Search Algorithm," International Journal on Electrical Engineering and Informatics, vol. 9, no. 4, pp. 800-812, 2017.

Downloads

Published

2021-12-27

How to Cite

Djalal, M. R., Saini, M., & Yunus, A. S. (2021). Load Flow Analysis After the Entry of Renewable Power Plants in the Sulselrabar System. Journal of Electrical Technology UMY, 5(2), 80–87. https://doi.org/10.18196/jet.v5i2.12897

Issue

Section

Articles