Search for collections on University of Merdeka Malang Repository

Design and Simulation Microstrip Antenna Monopole for K Band Frequency

Romadhon, Rifki Hari and Riadi, Muhammad Prakarsa (2023) Design and Simulation Microstrip Antenna Monopole for K Band Frequency. SMARTICS Journal, 9 (2). pp. 49-54. ISSN 2476-9754

[thumbnail of Design and Simulation Microstrip Antenna Monopole for K Band Frequency (Article).pdf]
Preview
Text
Design and Simulation Microstrip Antenna Monopole for K Band Frequency (Article).pdf

Download (1MB) | Preview
[thumbnail of Hasil Cek Turnitin_Design and Simulation Microstrip Antenna ....pdf]
Preview
Text
Hasil Cek Turnitin_Design and Simulation Microstrip Antenna ....pdf

Download (1MB) | Preview

Abstract

Planar monopole antennas continue to hold promise for advancement in communication systems for a variety of uses. This study will discuss a planar monopole antenna using Rogers substrate (εr) = 2.2 × 10−12 F·m−1. There are several important parameters studied in relation to antenna performance, including VSWR and Gain. Dimensions Ls (1mm,2mm,3mm,4mm) and Ws (0.5mm,1mm,1.5mm,2mm) to determine the Gain and VSWR of the suggested antenna, are variously associated with wavelength. As a consequence, the antenna with the lowest VSWR 1.67 was created from the four Ls and Ws trials. The point with the lowest VSWR operates at a resonant frequency of 22.74 GHz with a return loss of -12.23dB and gains up to 4.65dB. From the results of the VSWR, it can be concluded that the planar monopole antenna can work well because it has a VSWR value of < 2. From the above result it can be concluded that the planar monopole antenna can work well in the application of low orbit satellite communication or K Band Frequency.

Item Type: Article
Additional Information: Rifki Hari Romadhon NIDN: 0730019603
Uncontrolled Keywords: Antenna microstrip; Gain; K Band Frequency; Return Loss; VSWR
Subjects: T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions: Fakultas Teknik > S1 Teknik Elektro
Depositing User: Rita Juliani
Date Deposited: 27 Mar 2024 03:13
Last Modified: 27 Mar 2024 03:13
URI: https://eprints.unmer.ac.id/id/eprint/4147

Actions (login required)

View Item View Item