Efektifitas Perlindungan Kawat Tanah Jaringan SUTM 20 kV Gardu Induk Boom Baru Palembang
DOI:
https://doi.org/10.33387/protk.v6i2.1234Keywords:
petir, sambaran induksi, sambaran langsung, kawat tanahAbstract
Jaringan SUTM seringkali mengalami gangguan petir tak langsung berupa sambaran induksi . Hal ini disebabkan tingkat ketahanan impuls isolasi V50% dari isolator SUTM relative rendah. Untuk itu kawat ditempatkan pada jaringan untuk perlindungan. Efektifitas perlindungan kawat tanah dinyatakan sebagai faktor perisaian yang didefinisikan sebagai hasil bagi tegangan induksi dengan kawat tanah dan tegangan induksi tanpa kawat tanah.Tujuan penelitian ini adalah untuk mengetahui tingkat efektifitas kawat tanah dalam melindungi kawat saluran pada SUTM 20 kV di Gardu Induk Boom Baru. Dari hasil perhitungan dan analisa bahwa nilai faktor perisaian kawat tanah di Gardu Induk Boom Baru sudah cukup efektif, karena mampu mengurangi jumlah gangguan petir induksi sebesar 35,50 gangguan per 100 km per tahunReferences
Z. G. Datsios, P. N. Mikropoulos, and T. E. Tsovilis, “Estimation of the minimum shielding failure flashover current for first and subsequent lightning strokes to overhead transmission lines,†Electr. Power Syst. Res., 2014.
P. Sarajcev, “Monte Carlo method for estimating backflashover rates on high voltage transmission lines,†Electr. Power Syst. Res., 2015.
S. V. M. Amiri and H. R. Mirazizi, “A new approach to optimal location of single-transformer sub-transmission substations using GIS analysis,†2017 Conf. Electr. Power Distrib. Networks Conf., pp. 156–166, 2017.
M. A. H. Sirad, M. Rais, M. R. Djalal, and A. N. Putri, “Optimization of grounding resistance to minimize transient currents at 150 kV SULSELRABAR system,†in 2018 International Conference on Information and Communications Technology, ICOIACT 2018, 2018, vol. 2018-Janua.
M. A. H. Sirad and S. Taha, “Performance Optimazation Of 150 KV Transmission Tower In Jeneponto Steam Power Plant Using GIS Analysis.â€Â
M. A. H. Sirad and S. Taha, “Optimasi Kinerja Jaringan Transmisi 150 Kv Menggunakan Simulasi Geographic Information System Akibat Back Flashover Pada Pltu Jeneponto,†Patria Artha Technol. J., vol. 2, no. 2, pp. 109–116, 2018.
J. A. Martinez and F. Castro-Aranda, “Lightning flashover rate of an overhead transmission line protected by surge arresters,†in Power Engineering Society General Meeting, 2007. IEEE, 2007, pp. 1–6.
T. S. Hutauruk, “Gelombang Berjalan dan Proteksi Surja,†Erlangga, Jakarta, 1989.
P. T. PLN, “Standar Konstruksi Jaringan Tegangan Menengah Tenaga Listrik,†Jakarta PT. PLN, 2010.
E. Erhaneli and A. Desril, “Pengaruh Kawat Tanah Terhadap Gangguan Kilat Induksi Pada Sutm 20 Kv,†J. Tek. Elektro-ITP, vol. 1, no. 1, 2013.
Downloads
Published
How to Cite
Issue
Section
License
Authors who publish with this journal agree to the following terms:
- The copyright of the accepted for publication articles shall be assigned to Protek : Jurnal Ilmiah Teknik Elektro as the publisher of the journal. The intended copyright includes the rights to publish articles in various forms (including reprints).
- Protek : Jurnal Ilmiah Teknik Elektro maintain the publishing rights of the published articles.
- Authors are permitted to republish or disseminate published articles by sharing the link/DOI of the article at Protek : Jurnal Ilmiah Teknik Elektro. Authors are allowed to use their articles for any legal purposes deemed necessary without written permission from Protek : Jurnal Ilmiah Teknik Elektro with an acknowledgment of initial publication to this journal.
Protek : Jurnal Ilmiah Teknik Elektro by Department of Electrical Engineering, Faculty of Engineering, Universitas Khairun
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.






