Optimasi Penambahan Transformator Sisipan Terhadap Keandalan Jaringan di Gardu Distribusi
DOI:
https://doi.org/10.59061/jentik.v3i1.949Keywords:
Distribution Transformer, Insert Transformer, Overload, Voltage DropAbstract
Distribution substations are one of the important assets managed by the State Electricity Company (PLN), especially distribution transformers to distribute electric power to consumers. The MOADK006 Distribution Substation is located in Wakarleli Village, Moa District, Southwest Maluku Regency, Maluku Province with a transformer capacity of 100 kVA which is supplied by the Inner City Feeder of the PLN Moa electricity system. The transformer experiences a load condition exceeding 80% of its capacity. To overcome the problem of overloading at the MOADK006 distribution substation, which reached 93.72% of the 100 kVA capacity, it has exceeded the standards set by PLN ED Decree No.0017.E/DIR/2014. As a solution, an insert transformer with a capacity of 100 kVA was added. After adding the insert transformer, the MOADK006 distribution substation load was reduced to 45.02%, while the insert transformer bore a load of 48.81%. With this load distribution, the two distribution substations are in good loading condition, namely less than 60%, in accordance with the guidelines of PLN ED Decree No.0017.E/DIR/2014. It is estimated that the MOADK006 distribution substation can last up to 8 years. The voltage measurement at the end of the network after adding the insert transformer also experienced improvements, where the results of the Drop Voltage value at the end of the network before and after adding the insert transformer were 8.88% to 2.70% for the R phase, 7.59% to 3.16% for the S phase, and 7.55% to 2.25% for the T phase. Thus, the addition of the insert transformer proved to be effective in reducing the load on the distribution substation. MOADK006 and improves the voltage value at the end of the network, so that it meets applicable operational standards.
References
Angely, P. (2019). Hukum Kirchoff. Electrics, 2.
Ardilla, M. (2019). Analisis pengaruh pemindahan beban jaringan tegangan rendah terhadap pembebanan transformator gardu distribusi DB 0279 penyulang Padang Sambian.
Armando, W., Wartana, I. M., & S, I. B. (2023). Perencanaan pemasangan gardu sisipan pada gardu distribusi MNK 008 penyulang Kasuari di PT PLN (Persero) ULP Manokwari Kota. 07, 288–293.
Daman, S. (2010). Sistem distribusi tenaga listrik (pp. 1–35). Universitas Indonesia.
Dharma, I. P. A. A. W. (2024). Analisis pemasangan gardu sisip KD0261 pada gardu distribusi KD0096 penyulang Ir. Soekarno PT PLN (Persero) ULP Tabanan (pp. 1–23).
Hardani. (2020). Metode penelitian kualitatif & kuantitatif.
Irawati Bursa. (2021). Analisis rugi-rugi daya akibat ketidakseimbangan beban pada jaringan distribusi sekunder di PT PLN (Persero) ULP Watang Sawitto. 58.
Kementerian ESDM RI. (2016). Listrik kebutuhan pokok yang harus dijaga volume, kualitas, dan kesinambungannya. Arsip Berita Kementerian ESDM RI. Retrieved from https://www.esdm.go.id/id/media-center/arsip-berita/listrik-kebutuhan-pokok-yang-harus-dijaga-volume-kualitas-dan-kesinambungannya.
Kho, D. (2019). Pengertian transformator (trafo) dan prinsip kerjanya.
Susanto, M. R. W. (2020). Studi analisis dampak overload transformator terhadap kualitas daya di PT PLN (Persero) ULP Pangkep. Universitas Muhammadiyah Makassar, 2(1), 1–12.
Mertasana, A. (2015). Upaya mengatasi beban lebih pada gardu distribusi 160 kVA pada penyulang Kelan Tuban di PT PLN (Persero) ULP Kuta.
PT PLN (Persero). (2003). Tegangan standar (Vol. 391, p. 5).
PT PLN (Persero). (2007). Spesifikasi transformator distribusi bagian 1: Transformator fase tiga PT PLN (Persero) (pp. 1–50).
PT PLN (Persero). (2010a). Buku 1 kriteria enjinering konstruksi jaringan distribusi tenaga listrik (p. 170).
PT PLN (Persero). (2010b). Buku 4 standar konstruksi gardu distribusi dan gardu hubung tenaga listrik (pp. 1–143).
PT PLN (Persero). (2010c). Standar kontruksi sambungan tenaga listrik. Angewandte Chemie International Edition, 6(11), 951–952., Mi, 5–24.
PT PLN (Persero). (2014). Metode pemeliharaan trafo distribusi berbasis kaidah manajemen aset. Edaran Direksi PT PLN (Persero).
Renaldi, O. (2022). Analisis keandalan saluran udara tegangan menengah (SUTM) 20 kV berdasarkan SAIDI dan SAIFI pada PT PLN (Persero) Rayon Duri Riau. Jurnal Ekonomi, 18(1), 2(1).
Samsurizal, S., & Hadinoto, B. (2020). Studi analisis dampak overload transformator terhadap kualitas daya di PT PLN (Persero) UP3 Pondok Gede. Kilat, 9(1), 136–142. https://doi.org/10.33322/kilat.v9i1.784.
Sukamdi, H. M. K., Farizan, M. H., & Firmansyah, M. R. F. (2023). Analisis rencana pemasangan transformator sisipan untuk mengatasi overload dan drop voltage pada penyulang Selogabus PT PLN (Persero) ULP Bojonegoro Kota. Elposys: Jurnal Sistem Kelistrikan, 9(3), 127–133. https://doi.org/10.33795/elposys.v9i3.646.
Sumardjati, P. (2013). Jenis hubungan pada belitan pada trafo 3 fasa. Retrieved from https://electric-mechanic.blogspot.com/2013/10/jenis-hubungan-pada-belitan.html.
Widiatmika, K. W., Wijaya, I. A., & Setiawan, I. N. (2018). Analisis penambahan transformator sisipan untuk mengatasi overload pada transformator DB0244 di penyulang Sebelanga. Jurnal SPEKTRUM, 5(2), 19. https://doi.org/10.24843/spektrum.2018.v05.i02.p03.
Pelawi, Y. Z. (2018). Analisis rugi-rugi daya pada penghantar netral jaringan distribusi sekunder akibat ketidakseimbangan beban. Buletin Utama Teknik, 13(2), 1410–4520.
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