Analisis Pengaruh Variasi Photovoltaic Terhadap Sistem Proteksi di Instalasi Listrik Pabrik Pengolahan Garam

Authors

  • Afeef Kurnia Rahmawan Prodi Teknik Elektro, Jurusan Teknik Elektro, Universitas Persatuan Guru Republik Indonesia, Semarang, Indonesia
  • Mochammad Facta Departemen Teknik Elektro, Jurusan Teknik Elektro, Universitas Diponegoro, Semarang, Indonesia
  • Enta Akhmad Ramadhan Prodi Teknik Elektro, Jurusan Teknik Elektro, Universitas Jendral Soedirman, Purwokerto, Indonesia

DOI:

https://doi.org/10.30871/jaee.v9i1.9495

Keywords:

Pemodelan, Proteksi, Tegangan

Abstract

Penggunaan energi terbaharukan seperti Photovoltaic (PV) semakin meningkat untuk mengurangi ketergantuan terhadap pembangkit yang membutuhkan bahan bakar fosil. Namun integrasi PV pada beban yang disuplai oleh PLN menggunakan jaringan distribusi tegangan menengah (JTM) dapat mempengaruhi selektivitas proteksi di sisi beban, terutama saat kondisi irradiasi tinggi. Tujuan dari penelitian ini menganalisis perubahan koordinasi sistem proteksi yang terdapak oleh PV pada beban motor di Pabrik pengolahan Garam. Variasi daya PLTS 12kW hingga 27 kW digunakan untuk percobaan agar dapat perbandingan dampak saat PV eksisting 4kW dan kemungkinan pengembangan. Software bantu untuk menunjang penelitian ini dengan menggunakan ETAP. Mode Load Flow, Static Motor Starting dan Star – Protective Device Coordination digunakan dalam penelitian ini berkaitan beban yang digunakan adalah motor induksi. Hasil yang didapat menunjukan kenaikan tegangan pada kondisi starting motor dengan kapasitas PLTS 12 kW sebesar 69,42 Volt dan perlu penggantian gawai proteksi dari 63 Ampere menjadi 125 Ampere agar sistem lebih optimal.

Downloads

Download data is not yet available.

References

[1] BP, “Statistical Review of World Energy globally consistent data on world energy markets. and authoritative publications in the field of energy,” 2021.

[2] M. F. Ali, M. A. Halim, M. M. Julhash, and M. Ashikuzzaman, “Economic and Environmental Benefits of Grid-Connected PV-Biomass Systems in a Bangladeshi University: A HOMER Pro Approach,” Int. Trans. Electr. Energy Syst., vol. 2025, no. 1, 2025, doi: 10.1155/etep/5053853.

[3] T. Kobashi, Y. Choi, Y. Hirano, Y. Yamagata, and K. Say, “Deeply decarbonizing residential and urban central districts through photovoltaics plus electric vehicle applications,” 2021.

[4] L. R. Visser, E. M. B. Schuurmans, T. A. AlSkaif, H. A. Fidder, A. M. van Voorden, and W. G. J. H. M. van Sark, “Regulation strategies for mitigating voltage fluctuations induced by photovoltaic solar systems in an urban low voltage grid,” Int. J. Electr. Power Energy Syst., vol. 137, no. November 2021, p. 107695, 2022, doi: 10.1016/j.ijepes.2021.107695.

[5] M. Emarati, M. Barani, H. Farahmand, J. Aghaei, and P. C. del Granado, “A two-level over-voltage control strategy in distribution networks with high PV penetration,” Int. J. Electr. Power Energy Syst., vol. 130, no. October 2020, p. 106763, 2021, doi: 10.1016/j.ijepes.2021.106763.

[6] F. Peprah, S. Gyamfi, M. Amo-Boateng, and E. Effah-Donyina, “Impact assessment of grid tied rooftop PV systems on LV distribution network,” Sci. African, vol. 16, p. e01172, 2022, doi: 10.1016/j.sciaf.2022.e01172.

[7] V. Sharma, S. M. Aziz, M. H. Haque, and T. Kauschke, “Effects of high solar photovoltaic penetration on distribution feeders and the economic impact,” Renew. Sustain. Energy Rev., vol. 131, no. December 2019, p. 110021, 2020, doi: 10.1016/j.rser.2020.110021.

[8] J. D. Pradhan, S. S. Hadpe, and R. G. Shriwastava, “Analysis and design of overcurrent protection for grid-connected microgrid with PV generation,” Glob. Transitions Proc., vol. 3, no. 1, pp. 349–358, 2022, doi: 10.1016/j.gltp.2022.03.023.

[9] A. Reda, A. F. Abdelgawad, M. I. Elsayed, and F. B. Al-Dousar, “Multi-characteristic overcurrent relay of feeder protection for minimum tripping times and self-protection,” Electr. Eng., vol. 105, no. 2, pp. 605–617, 2023, doi: 10.1007/s00202-022-01683-5.

[10] K. M. Banjar-Nahor, M. Ikhsan, and N. Hariyanto, “Desain Koordinasi Sistem Proteksi Untuk Microgrid Berbasis Inverter,” J. EECCIS (Electrics, Electron. Commun. Control. Informatics, Syst., vol. 16, no. 3, pp. 79–84, 2022, doi: 10.21776/jeeccis.v16i3.1615.

[11] M. Al Talaq and C. A. Belhaj, “Optimal PV penetration for power losses subject to transient stability and harmonics,” Procedia Comput. Sci., vol. 175, pp. 508–516, 2020, doi: 10.1016/j.procs.2020.07.072.

[12] J. L. M. Pereira, A. F. R. Leal, G. O. de Almeida, and M. E. de L. Tostes, “Harmonic effects due to the high penetration of photovoltaic generation into a distribution system,” Energies, vol. 14, no. 13, 2021, doi: 10.3390/en14134021.

[13] P. V. V Mehtre and I. Katakwar, “Load Flow Analysis of Power System in ETAP,” vol. 12, no. 4, pp. 64–69, 2024, doi: 10.17148/IJIREEICE.2024.12409.

[14] E. Ubom, I. Akpaden, M. Enin, and U. Ukommi, “Design And Construction Of Direct On Line Starter ( DOL ) For 3-Phase Electric Motor,” no. January, 2024.

[15] J. G. Lassio, D. Castelo Branco, A. Magrini, and D. Matos, “Environmental life cycle-based analysis of fixed and single-axis tracking systems for photovoltaic power plants: A case study in Brazil,” Clean. Eng. Technol., vol. 11, no. November, 2022, doi: 10.1016/j.clet.2022.100586.

[16] R. Adolph, “User Manual HYD 5-20KTL-3PH,” pp. 1–23, 2016.

[17] N. C. Yang and C. H. Tseng, “Adaptive convergence enhancement strategies for Newton–Raphson power flow solutions in distribution networks,” IET Gener. Transm. Distrib., vol. 18, no. 13, pp. 2339–2352, 2024, doi: 10.1049/gtd2.13197.

[18] K. G. R. F. Comester et al., “Voltage Impact of Roof-Top Solar Photo-Voltaic Systems on Low Voltage Network and Measures of Mitigation,” Ceylon Electr. Board, R D J., no. May, pp. 9–17, 2024, [Online]. Available: https://ceb.lk/front_img/img_reports/1596152714CEB_RD_Journal_June_2020.pdf

[19] IEEE Recommended Practice for Conducting Motor-Starting Studies and Analysis of Industrial and Commercial Power Systems. IEEE Std 3002.7, 2019. doi: 10.1109/IEEESTD.2019.8700700.

[20] and A. I. A. G. A. Ibrahmusa, T. Joko, T. Wrahatnolo, “Analisis Koordinasi Setting Relay Proteksi Pada Jaringan Distribusi 20KV Penyulang Brenggolo Di PT.PLN UP3 Kediri Gardu Induk Pare,” Tek. Elektro, vol. 12, no. 1, pp. 28–36, 2022.

[21] K. A. Lee, Y. M. Cho, and H. J. Lee, “Circuit model and analysis of molded case circuit breaker interruption phenomenon,” Electron., vol. 9, no. 12, pp. 1–14, 2020, doi: 10.3390/electronics9122047.

Downloads

Published

2025-06-28 — Updated on 2025-06-28

Versions

How to Cite

Afeef Kurnia Rahmawan, Mochammad Facta, & Enta Akhmad Ramadhan. (2025). Analisis Pengaruh Variasi Photovoltaic Terhadap Sistem Proteksi di Instalasi Listrik Pabrik Pengolahan Garam. Journal of Applied Electrical Engineering, 9(1), 82–90. https://doi.org/10.30871/jaee.v9i1.9495

Issue

Section

Manuscripts

Similar Articles

You may also start an advanced similarity search for this article.