ac

2.3 Ghz Lte Antenna Design Using Triangle Geometry and Array Structure

Authors

  • Uzma Septima Politeknik Negeri Padang, Indonesia
  • Yulindon Politeknik Negeri Padang, Indonesia
  • Herry Setiawan Politeknik Negeri Padang, Indonesia
  • Nasrul Politeknik Negeri Padang, Indonesia
  • Putra Politeknik Negeri Padang, Indonesia

DOI:

10.47709/brilliance.v3i2.3035

Keywords:

Antena mikrostrip, LTE, Array, segitiga, antenna

Dimension Badge Record



Abstract

Microstrip antenna is one of the most important devices in telecommunications systems. One example is the design of a microstrip antenna on a long time evolution (LTE) device. Disadvantages of this microstrip antenna include low gain, poor directionality, low efficiency, resistance losses on the feed line and narrow bandwidth. This research will design a triangular patch array microstrip antenna to increase the gain so that it can meet the desired work specifications with a working frequency of 2.300MHz. The antenna is designed using FR-4 Epoxy substrate material with a size of 120 mm x 60 mm, which has a dielectric constant (?r) of 4.3, a loss tangent of 0.035 and a material thickness of 1.6 mm. Antenna designed using CST studio suite software 2018. The results obtained in the working frequency band 2280.4 MHz – 2370.0 Mhz, middle frequency 2332 MHz, return loss – 47.360dB, bandwidth 24.7MHz, VSWR 1.008, gain 4.39dBi, impedance 49.90 , and unidirectional radiation pattern.

Google Scholar Cite Analysis
Abstract viewed = 113 times

References

Alam, S., & Nugroho, R.F. (2018). Perancangan Antena Mikrostrip Array 2 x 1 Untuk Meningkatkan Gain Untuk Aplikasi LTE Pada Frekuensi 2.300MHz. Jurnal Teknik dan Ilmu Komputer. Vol 07 No.28.

Ali, M. S., Hossain, E., & Kim, D. I. (2017). LTE/LTE-A random access for massive machine-type communications in smart cities. IEEE Communications Magazine, 55(1), 76-83.

Arand, B. A., Bazrkar, A., & Zahedi, A. (2017). Design of a phased array in triangular grid with an efficient matching network and reduced mutual coupling for wide-angle scanning. IEEE Transactions on Antennas and Propagation, 65(6), 2983-2991.

Arza, M.D., Yuyun, S.R.,Radial.A. (2018). Perancangan dan Realisasi Antena Mikrostrip Linear ArrayTriangular Patch Untuk Televisi Digital. Sekolah Ilmu Terapan. IEEE.

Hoymann, C., Astely, D., Stattin, M., Wikstrom, G., Cheng, J. F., Hoglund, A., ... & Gunnarsson, F. (2016). LTE release 14 outlook. IEEE Communications Magazine, 54(6), 44-49.

Pramono, S. (2014). Rancang Bangun Antena Mikrostrip Array 2 x2 Frekuensi 2300 MHz. Jurusan Teknik Elektro Terapan, ISSN : 2252-4908 Vol. 3 No. 2.

Ponnapalli, V. A. S., & Jayasree, P. V. Y. (2016). Design of multi-beam rhombus fractal array antenna using new geometric design methodology. Progress In Electromagnetics Research C, 64, 151-158.

Priyatama, P.A.P., Wijanto, H., & Wahyu, Y. (2016). Perancangan dan Realisasi Antena Mikrostrip Slot Rectangular Untuk Wifi 2.4 GHz dan 5.68 GHz. E – Proceeding of Engineering : Vol. 3, No.1.

Wahyu, I.R. (2020). Antena MIMO Patch Triangular Dengan Penambahan Slot Untuk Aplikasi 5G. E – Proceeding of Engineering : Vol. 7, No.2.

Yunus M, el, al, (2019). Desain Antena Patch Segitiga Linier Array Untuk Komunikasi Seluler. Bogor: Departemen Teknik Elektro, IEEE)

Zulkifli, F. Y., Rahardjo, E. T., & Hartanto, D. (2008). Radiation properties enhancement of triangular patch microstrip antenna array using hexagonal defected ground structure. Progress In Electromagnetics Research M, 5, 101-109

Downloads

ARTICLE Published HISTORY

Submitted Date: 2023-10-26
Accepted Date: 2023-10-26
Published Date: 2023-11-03

How to Cite

Septima, U., Yulindon, Setiawan, H., Nasrul, & Putra. (2023). 2.3 Ghz Lte Antenna Design Using Triangle Geometry and Array Structure. Brilliance: Research of Artificial Intelligence, 3(2), 170-175. https://doi.org/10.47709/brilliance.v3i2.3035

Most read articles by the same author(s)

1 2 > >>