Perancangan Antena Mikrostrip Array 2 Elemen untuk Aplikasi 5G Menggunakan Software CST

Authors

  • Mutiara Widasari Sitopu Politeknik Negeri Medan
  • Suherman Suherman Politeknik Penerbangan Medan
  • Febrin Aulia Batubara Politeknik Negeri Medan
  • Nur Adilah Politeknik Negeri Medan
  • Ummu Handasah Politeknik Negeri Medan
  • Muhammad Sukri Habibi Daulay Politeknik Negeri Medan
  • Charla Tri Selda Manik Politeknik Negeri Medan
  • Samuel Gerardo Simanjuntak Politeknik Negeri Medan

DOI:

https://doi.org/10.70340/jirsi.v5i2.356

Keywords:

5G Networks, Microstrip Array Antenna, Two-Element Array, Return Loss, Bandwidth.

Abstract

The development of 5G communication technology requires antenna devices that have good performance, small size, and are able to operate at high frequencies. One alternative is a microstrip array antenna because it has advantages in size, ease of manufacture, and the ability to increase gain. This study discusses the design process and performance testing of a microstrip array antenna that functions at a frequency of 5GHz for use in 5G communication systems. The design and testing process were carried out using CST Studio Suite software. The simulation results show that the designed antenna is able to operate at a frequency of 5GHz with a return loss value of less than -10 dB, where the results obtained based on the simulation are -24.42dB. VSWR below 2, where the results obtained based on the simulation are 1.12, and desired bandwidth is wide, which is produced in this design is 380MHz. Thus, the designed two element microstrip array antenna has been successfully designed with the standard parameters specified for use in a 5G network communication system.

Downloads

Download data is not yet available.

References

Muhammad A.F. dan Kristyawati, “Perancangan dan Analisa Antena Mikrostrip Patch 3.5 GHz Menggunakan Software CST Studio Suite 2022 Untuk Teknologi 5G”, Jurnal Ilmiah Teknik, Vol.2 No.2, hal. 37-50, 2023.

Yudi P, Alam S, “Perancangan Antena Mikrostrip Circular Patch dengan Inset-Feed dan Array pada Frekuensi 3.5 GHz untuk Sistem Komunikasi 5G”, Tecne Jurnal Ilmiah Elekro, Vol. 22., No.1, hal.129-142, 2023.

Muthia A., Yulindon, Uzma S., “Desain Antena Mikrostrip 3.5 GHz Untuk Aplikasi 5G Menggunakan Metode Complementary Rhombus Resonator Untuk Meningkatkan Bandwidth”, Jurnal Ilmiah Poli Rekayasa, Vol. 19. No.2 hal. 99-103, 2024.

Adhiyoga, Y.G., Arifin T.N., Iman S, “Higly Independent 5G Multiband Antenna Using Circular Patch Sructure”, Buletin Pos dan Telekomunikasi, Vol 21, No.2 pp.32-41, 2023.

J. Jeevitha, G. S. Shine Let, H.V. Du Jhon, and B.C. Pratap,” A Compact Hook-Shaped 3.5 GHz Microstrip Antenna for 5G Application”, Prezeglad Elektrotechniczy, Vol.1, No.5, pp.90-92, 2023.

Hanny M., Asep B.S., “Antena Mikrostrip Rectangular Array 4x2 Elemen dengan Metode Inset Feed Pada Frekuensi 3.5 GHz untuk Aplikasi 5G”, Jurnal Teknologi Rekayasa, Vol 6. No.2, hal. 175-182, 2020.

Rahayu, D.P., Yulindon, Nasrul N., “Antena Mikrostrip Rectangular Patch dengan Inset-Feed dan Array Frekuensi 2.1 GHz untuk Memperkuat Jaringan 5G”, Journal of Comprehensive Science, Vol. 4, No. 3., pp.1177-1183, 2025.

Pongoh, D.C., Wenno, L., Tayuh, D., Rahman, J., Roboth,D.& Wateriri, Y.Y.S, “Dampak Dampak Jaringan 5G Bagi Kehidupan Manusia”, Jurnal Ilmu Komputer dan Sistem Informasi, Vol.9, No.4, hal.72-75.

Yosy R., Petrus K.G., Vira U., “Modifikasi Antena Mikrostrip Berbasis Defected Ground Structure (DGS) Berbentuk Patch Puzzle untuk Aplikasi Sub-6 GHz 5G”, Journal of Telecommunication, Electronics, and Control Engineering (JTECE), Vol 5, No. 2, pp.109-118, 2023.

Esti, H., Nurwijayanti K.N., “Rancang Bangun Antena Mikrostrip Mimo 2x2 Square Pacth U-Slot untuk Komunikasi 5G Frekuensi 2,3 GHz”, Jurnal Teknologi Industri (JTI), Vol. 14, No.2, hal.77-83, 2025.

Qinthara A.G, Muhammad T. Mutiara W.S., “Desain dan Evaluasi Kinerja Antena Mikrostrip Array 2x2 dengan Frekuensi 25 GHz untuk Sistem Komunikasi 5G”, Jurnal Teknologi Rekayasa Jaringan Telekomunikasi, Vol. 4. No.1, hal.23-32, 2024.

Downloads

Published

2026-05-31

Issue

Section

Articles