The Corona Losses Detection Analysis at High Voltage

  • Satrio Dwi Nugroho Universitas Indonesia
  • Rudy Setiabudy Universitas Indonesia
Keywords: corona discharge, Ozon, High voltage

Abstract

The increasing use and use of electricity in Indonesia causes the potential for greater losses in the transmission and distribution system. This causes many problems that arise, one of which is the corona in the transmission and distribution system. Corona mapping can only be detected through several ways, namely sound, light and distinctive smell. In this thesis, the aim is to detect the corona with the characteristics of a distinctive sense of smell, then the results of the detection are compared with the calculated corona losses. This distinctive odor is the smell of ozone which is produced from ionization at high voltage with the surrounding air, namely oxygen to form ozone molecules that are not permanent. The metal electrode to be tested is the copper tip metal. After testing the voltage of the appearance of the corona occurs at 7kV, high voltage when testing the tip of the copper metal point at a voltage of 21 kV is greater than the corona losses. The greater the voltage, the greater the corona losses generated.

References

Nur Muhammad. Fisika Plasma dan Aplikasinya. Semarang: Universitas Diponegoro. 2011: 1 – 7.

Lukmanto Adi.(2009). Rancang Bangun Ozonator Koaksial Shell And Tube Untuk Pengolahan Air Bersih Dan Air Minum. Skripsi. Depok : Fakultas Teknik Universitas Indonesia.

Kurnadi Achmad B. (2006). Analisis Mekanisme Korona Hingga Lepas Denyar pada Model Kubikel. Tesis. Depok : Fakultas Teknik Universitas Indonesia.

Priatmadja Rizally, Dhou’ut Ahmad. T & Nurdin. M. (2020). Corona Measurement Test in Correlation with Predictive Maintenance on Extra High Voltage Transmission Line. International Conference on Technology and Policy in Electrical Power & Energy (ICT-PEP). IEEE.

Javed Hassan, Kang Li & Zhang G. (2019) The Study of Different Metals Effect on Ozone Generation Under Corona Discharge in MV Switchgear Used for Fault Diagnostic. The Asia Power and Energy Engineering Conference. IEEE.

Lisa. P., Liane. K., Janina. H., Veit. H., Ulrich. G & Christian. P. (2020). Recent Developments in Ozone Sensor Technology for Medical Applications. MDPI Micromachines. 11 : 624.

Ma Bin. (2011) Effects of Corona and Ozone Exposure on Properties of Polymeric Materials for High Voltage Outdoor Applications. PhD Thesis. Sweden : Chalmers University Of Technology.

Bosco Don., & Garniwa Iwa M.K. Analisis dan Simulasi Tegangan Awal Terbentuknya Korona pada Model Kubikel. Skripsi. Depok : Fakultas Teknik Universitas Indonesia; 2008.

Amien Rahardjo. Dampak Korona Terhadap Lingkungan. Laporan Penelitian. Depok : Fakultas Teknik Universitas Indonesia; 1995.

Wang K., Liao. Y., Wang. L., Guan. Z., Huo. F., Hu. W., & Gu. L. (21 – 24 April 2008). Study of DC Corona Inception and Extinction Voltage Measurement on Electrode Surfaces Using UV Corona Monitor. International Conference on Condition Monitoring and Diagnosis. IEEE. China.

Bowe, J. C. (1960). Drift Velocity of Electrons in Nitrogen, Helium, Neon, Argon, Krypton, and Xenon. Phys. Rev. 117: 1411–1415.

Goheen. S. C., C. Larkin C & Bissell. M. G. (1984). Ozone Produced by Corona Discharge in the Presence of Water. Int. J. Biometeor, 28 (2) 158-161 0020-7128/84/2802-0157. Swets & Zeitlinger.

Yun-Peng Liu, Qi-Fa Wan, dan Zhi-Bin Zhao. (April 2012) AC Conductors Corona-Loss Calculation and Analysis in Corona Cage. IEEE Transactions on Power Delivery, 27 (2).

Amril.( Oktober 2018) Pengaruh Medan Listrik Terhadap Komponen Elektronik. POLI REKAYASA, XIV (1).

Wildan Rahardian P, I made Y N & IGN Satriyadi. (2015) Pengaruh Bentuk dan Material Eletrode terhadap Partial Discharge. JURNAL TEKNIK ITS, IV (1).

Syahbana Rusdi. (September 2019). Analisa Terbentuknya korona pada saluran cubicle tegangan 20 kV Serta Pengaruhnya terhadap rugi-rugi daya. LENSA. II(48)

Pasra Nurmiati, Andi M & M Oka A. (. Juli – Desember 2018). Analisa Efek Korona Pada Sistem Distribusi Tenaga Listrik 20 kV Pada Gardu Beton. JURNAL ILMIAH SUTET. VIII (2).

Published
2022-08-31
How to Cite
Nugroho, S., & Setiabudy, R. (2022). The Corona Losses Detection Analysis at High Voltage. Jurnal Pendidikan Teknologi Kejuruan, 5(3), 83-89. https://doi.org/10.24036/jptk.v5i3.28423
Section
Articles

Most read articles by the same author(s)

Obs.: This plugin requires at least one statistics/report plugin to be enabled. If your statistics plugins provide more than one metric then please also select a main metric on the admin's site settings page and/or on the journal manager's settings pages.