PENYEIMBANGAN BEBAN TRANSFORMATOR DISTRIBUSI PCC-007 UNTUK MENGURANGI RUGI-RUGI JARINGAN PADA TEGANGAN MENENGAH 20KV

Fadel Muhammad, Parlin Siagian, Muhammad Fahreza

Abstract


The distribution system of electrical power networks serves as a means to distribute electrical energy to both industrial and household consumers. With the increasing population growth, the number of electrical energy users or consumers also increases, potentially impacting the loading on each distribution transformer. If the loading on each transformer increases, it can lead to overload, load imbalance, power losses, and damage to the transformer. Therefore, to ensure the proper operation of distribution transformers, PLN (a state-owned electricity company in Indonesia) has set a standard for the loading on distribution transformers, which should not exceed 80%. This research aims to measure the loading on distribution transformers and analyze the occurrence of power losses caused by load imbalance. Measurements are conducted using a clamp meter and earth tester to obtain current and voltage values as well as the resistance value of grounding. Subsequently, calculations are performed for transformer loading, load imbalance, and power losses on the feeder.

Keywords


Transformator, Overload Transformator, Ketidakseimbangan Beban, Sistem Distribusi

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References


A. F. Prawira, “Analisis Ketidakseimbangan Beban Transformator Distribusi 20 KV Dan Sistem Pentanahan.” Universitas Muhammadiyah Yogyakarta, 2021.

I. W. Y. Prasetya, I. N. Setiawan, and I. G. D. Arjana, “Analisis Ketidakseimbangan Beban dan Harmonisa pada Transformator Distribusi MI 0096 Penyulang Abianbase,” J. Spektrum, vol. 7, no. 1, 2020.

A. Darwanto, “ANALISIS KETIDAK SEIMBANGAN BEBAN PADA TRANSFORMATOR DISTRIBUSI Di PT. PLN (Persero) RAYON CEPU,” SIMETRIS, vol. 15, no. 1, pp. 35–42, 2021.

R. Afrianda, S. Samsurizal, and A. A. Nurul, “Pengaruh Ketidakseimbangan Beban Terhadap Efesiensi Transformator Distribusi Studi Gardu PT PLN (PERSERO) Area Bekasi,” Sutet, vol. 10, no. 1, pp. 29–38, 2020.

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DOI: https://doi.org/10.30591/polektro.v13i2.6800

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