Design and Simulation Sag Tension of a 20kV Power System with 150kV Tower Infrastructure in Marabahan City with Monte Carlo method
DOI:
https://doi.org/10.36456/best.vol7.no1.10234Keywords:
MV 20 KV, MonteCarlo, HV 150 kV, Sag CableAbstract
Rumpiang Bridge is a vital object and requires special handling for voltage installation; therefore, a construction that is capable of spanning a wide area is needed, where the construction obtained is the 150 kV HV construction, and for the cable span, it is simulated using the Monte Carlo method for the analysis of cable crossing deflection in Barito Kuala, with three types of cables, namely ACSR, AAAC, and AAACS. The simulation was carried out 1000 times by considering random variations of ±10% in cable weight and tensile force and ±5% in the crossing length. The results show that ACSR and AAAC cables have low average deflections, 3.24 meters and 3.26 meters, respectively, with standard deviations of 0.33 meters and 0.32 meters, indicating stable and consistent mechanical performance. While the AAACS cable shows a higher average deflection of 4.72 meters and a standard deviation of 0.48 meters, indicating a greater variation in deflection due to its physical characteristics. All three cables meet the technical requirement of maximum deflection <30 meters, but ACSR cable is recommended as the primary choice due to its combination of low deflection and high stability, which provides a greater safety margin in extreme crossing environmental conditions.
References
N. Octanazizah, Jenny Ernawati, Agus Dwi Wicaksono, “Arahan Zonasi Kawasan Jembatan Rumpiang di Kabupaten Barito Kuala,” PROKONS Jurusan Teknik Sipil, vol. 6, no. 1, p. 13, Feb. 2012, doi: 10.33795/prokons.v6i1.6.
A. Abdurahman, S. Bina, and B. Banjarmasin, “DAMPAK PEMBANGUNAN JEMBATAN RUMPIANG TERHADAP PEREKONOMIAN MASYARAKAT DI KECAMATAN CERBON KABUPATEN BARITO KUALA,” 2017.
A. Nismara, M. A. Rahmannur, and T. M. Hamdy, “ANALISIS METODE PENANAMAN SALURAN LISTRIK DI BAWAH TANAH,” Jurnal Informatika MULTI, vol. 02, no. 3, 2024.
S. Zulhafizan, J. Junaidi, and F. Fitriah, “Perencanaan Saluran Tegangan Rendah Menggunakan Kabel Bawah Tanah di Lingkungan Universitas Tanjungpura,” COMSERVA : Jurnal Penelitian dan Pengabdian Masyarakat, vol. 4, no. 6, pp. 1714–1731, Oct. 2024, doi: 10.59141/comserva.v4i6.2485.
A. Hamdani, A. Yani Jl Terusan Jenderal Sudirman, and J. Barat, “Analisis Penentuan Lokasi Gangguan Saluran Kabel Bawah Tanah Tegangan Menengah Menggunakan Metode Direct Circuit Analysis 20 KV di PT Cikarang Listrindo,” vol. 7, no. 1.
A. H. S. M. A. W. J. U. D. H. Yoga A. Harsoyo, “BEBAN MAKSIMU, TEGANGAN, LENDUTAN DAN MOMEN CURVATUR PADA VARIASI JEMBATAN BETON BALOK T DENGAN MENGGUNAKAN SOFTWARE RESPONSE 2000”.
M. A. Sobikin and D. H. Ananta, “CYCLOTRON : Jurnal Teknik Elektro Analisis Drop Tegangan dan Manuver Jaringan pada Penyulang SGN11 dan Penyulang SGN14 Menggunakan Software ETAP 16.0.0,” 2022.
D. I. Pratama, I. Cahayahati, and J. T. Elektro, “Analisa Drop Tegangan dan Rugi-rugi Daya pada Jaringan Tegangan Menengah 20kV Gardu Induk Sungai Penuh Menggunakan Aplikasi ETAP 12.6.0.”
H. Kiswanto, “STUDI ANALISA PERENCANAAN INSTALASI DISTRIBUSI SALURAN UDARA TEGANGAN MENENGAH (SUTM) 20 KV”.
Syafriyudin, “Pelatihan Penyambungan Kabel Tegangan Menengah 20 KV,” 2021.
A. Salim, A. Rizal Sultan, and A. Akmal, “ANALISIS PERBANDINGAN SISTEM SALURAN KABEL UDARA TEGANGAN MENENGAH (SKUTM) DAN SALURAN KABEL TANAH TEGANGAN MENENGAH (SKTM).”
“SPLN 121_KONST-SUTT”.
I. H. Kartojo, A. Triwiyatno, and S. Nisworo, “Analisis Saluran Kabel Tanah pada Proyek Pembangunan Saluran Kabel Tegangan Tinggi 150kV Kawasan Industri Kapasitas 170MVA Sepanjang 6,5 kmr,” JPII, vol. 2, no. 4, pp. 257–263, doi: 10.14710/jpii.2024.24584.
IMTIC 18 : Technologies For Future Generations : 5th International Multi-Topic ICT Conference : April 25-27, 2018, Jamshoro, Pakistan : proceedings. IEEE, 2018.
S. Fleischer Myhre, “Reliability Assessment Tool for Modern Electrical Distribution Systems-A Monte Carlo Simulation Approach,”
T. Barbosa de Miranda, R. K. Badibanga, J. A. ARAUJO, and J. FERREIRA, “SELF-DAMPING OF CONDUCTORS AAC, AAAC AND ACSR WITH RESPECT OF H/W PARAMETER,” Associacao Brasileira de Engenharia e Ciencias Mecanicas - ABCM, Dec. 2019. doi: 10.26678/abcm.cobem2019.cob2019-1666.
M. B. Br Manik, P. K. Nasution, S. Suyanto, and M. Yanti, “Kajian Metode Simulasi Monte Carlo,” Journal of Mathematics, Computations and Statistics, vol. 7, no. 2, pp. 232–242, Sep. 2024, doi: 10.35580/jmathcos.v7i2.2994.
“PENERAPAN METODE MONTE CARLO PADA SIMULASI PREDIKSI PERMINTAAN MOBIL.”
Yusmaity, Julius Santony, and Yuhandri, “Simulasi Monte Carlo untuk Memprediksi Hasil Ujian Nasional (Studi Kasus di SMKN 2 Pekanbaru),” Jurnal Informasi & Teknologi, vol. 1, no. 4, pp. 1–6, Oct. 2019, doi: 10.37034/jidt.v1i4.21.
V. Anastasia and M. Subhan, “Simulasi Monte Carlo dan Penerapannya dalam Menentukan Probabilitas Pergerakan Saham Indeks LQ-45,” Journal Of Mathematics UNP, vol. 7, no. 4, pp. 1–11, 2022.
W. N. Cahyo, “PENDEKATAN SIMULASI MONTE CARLO UNTUK PEMILIHAN ALTERNATIF DENGAN DECISION TREE PADA NILAI OUTCOME YANG PROBABILISTIK,” vol. 13, no. 2, pp. 11–17, 2008.
W. N. Cahyo, “PENDEKATAN SIMULASI MONTE CARLO UNTUK PEMILIHAN ALTERNATIF DENGAN DECISION TREE PADA NILAI OUTCOME YANG PROBABILISTIK,” vol. 13, no. 2, pp. 11–17, 2008.
A. Muhazir STMIK Royal, “PENERAPAN METODE MONTE CARLO DALAM MEMPREDIKSI JUMLAH PENUMPANG KERETA API (STUDI KASUS : PT.KAI WILAYAH SUMATRA),” 2022. [Online]. Available: http://jurnal.goretanpena.com/index.php/JSSR
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