@inproceedings{45421699117a4136b601456527aebbf0,
title = "Design of Circular Microstrip Antenna for Partial Discharge Measurement in High Voltage Equipment",
abstract = "In this study a circular microstrip antenna was designed to detect partial discharge (PD) in high voltage equipment. This antenna design has a relatively small size. It could detect PD in air, oil and solid insulation media. There are several ways to achieve the expected results as designed an antenna, including cutting the ground and adding an 'i' slot to the antenna ground by trial and error to achieve the objective of antenna. The advantage of this antenna is that it can detect in a horizontal or vertical position. The goals used in the parameters of this antenna include operating frequencies of 200 MHz - 1.8 GHz, return loss less than -10 dB, VSWR (Voltage Standing Wave Ratio) less than 2, input impedance of 50 Ω, gain value greater than 2 dB and omnidirectional radiation pattern. The result antenna design uses an 18 x 11 cm2 circular patch and is proven to detect partial discharge in air, oil and solid insulation media. According to the simulation results, this antenna design has an optimum frequency of 0.94 GHz.",
keywords = "Air, Antenna Design, Circular Microstrip, Oil, Partial Discharge, Solid",
author = "Imam Syafi{\textquoteright}e and Negara, \{I. Made Yulistya\} and Daniar Fahmi and Eko Setijadi",
note = "Publisher Copyright: {\textcopyright} 2024 IEEE.; 2nd IEEE International Conference on Electrical Engineering, Computer and Information Technology, ICEECIT 2024 ; Conference date: 22-11-2024 Through 23-11-2024",
year = "2024",
doi = "10.1109/ICEECIT63698.2024.10860151",
language = "English",
series = "ICEECIT 2024 - Proceedings: 2nd International Conference on Electrical Engineering, Computer and Information Technology 2024",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "199--204",
booktitle = "ICEECIT 2024 - Proceedings",
address = "United States",
}