Araştırma Makalesi

A Cost-Effective Wide-Band Antenna for 5G Communication Systems

Cilt: 8 Sayı: 3 15 Mayıs 2025
PDF İndir
TR EN

A Cost-Effective Wide-Band Antenna for 5G Communication Systems

Öz

This study addresses the design of a wide-band microstrip patch antenna for 5G mobile communication systems. To respond to the increasing data rate and wide bandwidth needs in fifth-generation communication systems, it is very important to increase the performance of the antennas used. In this paper, a manufacturable and compact microstrip patch antenna design operating at 28 GHz wave frequency is realized and the simulation results are compared with the measured results. The proposed antenna is designed using a low-cost FR-4 substrate. The primary motivation behind calling the antenna “cost effective” in this study is the choice of the FR-4 substrate, which is significantly more affordable than other high-performance materials commonly used for 5G antennas, such as Rogers RT Duroid. Despite the limitations of FR4 substrate at high frequencies, this study demonstrates that a functional and efficient wide-band antenna can still be achieved through careful design and optimization. The performance of the antenna is evaluated with parameters such as input reflection coefficient (S_11), bandwidth, gain, and radiation efficiency of the antenna. The simulations of the proposed antenna are performed using CST and CEMS programs and the obtained results show that the antenna has a wide bandwidth of 1950 MHz between 26.85 GHz and 28.8 GHz. A parametric study of the antenna is performed to show the effect of substrate thickness and patch size on antenna performance. Numerical and measured results show that the proposed microstrip patch antenna has good performance for 5G communication systems, including wide bandwidth, high gain and low reflection coefficient. The antenna fabricated on the low-cost FR4 substrate can be useful for 5G communication systems with its cost-effectiveness and compact geometric configuration.

Anahtar Kelimeler

Kaynakça

  1. Afif RA, Isnawati AF, Danisya AR. 2020. Comparative analysis of mmWave channel model with 26 GHz and 28 GHz: A case study in Wonosobo City. In: 2020 IEEE International Conference on Communication, Networks and Satellite (Comnetsat), 17-18 December, Malang, Indonesia, pp: 380-384.
  2. Awan WA, Zaidi A, Baghdad A. 2019. Patch antenna with improved performance using DGS for 28GHz applications. In: 2019 International Conference on Wireless Technologies, Embedded and Intelligent Systems (WITS), 3-4 April, pp: 1-4.
  3. Balanis CA. 2015. Antenna theory: analysis and design. John Wiley & Sons, Hoboken, NJ, USA, pp: 1104.
  4. Chowdhury MZB, Islam MT, Hossain I, Samsuzzaman M. 2024. A compact 6-shaped high isolation MIMO antenna for 28 GHz 5G applications. Int J Commun Syst, e5991.
  5. Darboe O, Konditi DBO, Manene F. 2019. A 28 GHz rectangular microstrip patch antenna for 5G applications. Int J Eng Res Technol, 12(6): 854-857.
  6. Darsono M, Wijaya AR. 2020. Design and simulation of a rectangular patch microstrip antenna for the frequency of 28 GHz in 5G technology. In: J Phys Conf Ser, 28-29 August, Bali, Indonesia, 1469(1): 012107.
  7. de Paula IL, Lemey S, Bosman D, Van den Brande Q, Caytan O, Lambrecht J, Rogier H. 2020. Cost-effective high-performance air-filled SIW antenna array for the global 5G 26 GHz and 28 GHz bands. IEEE Antennas Wirel Propag Lett, 20(2): 194-198.
  8. Demir V, Elsherbeni AZ. 2021. Computational electromagnetic simulator. Software package version, 4, Oxford, USA, pp:41.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik Elektromanyetiği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

15 Mayıs 2025

Gönderilme Tarihi

14 Ocak 2025

Kabul Tarihi

9 Nisan 2025

Yayımlandığı Sayı

Yıl 2025 Cilt: 8 Sayı: 3

Kaynak Göster

APA
Kalınay, G., Duru, İ., Tabaru, T. E., & Kaburcuk, F. (2025). A Cost-Effective Wide-Band Antenna for 5G Communication Systems. Black Sea Journal of Engineering and Science, 8(3), 824-830. https://doi.org/10.34248/bsengineering.1619839
AMA
1.Kalınay G, Duru İ, Tabaru TE, Kaburcuk F. A Cost-Effective Wide-Band Antenna for 5G Communication Systems. BSJ Eng. Sci. 2025;8(3):824-830. doi:10.34248/bsengineering.1619839
Chicago
Kalınay, Gürkan, İremnur Duru, Timuçin Emre Tabaru, ve Fatih Kaburcuk. 2025. “A Cost-Effective Wide-Band Antenna for 5G Communication Systems”. Black Sea Journal of Engineering and Science 8 (3): 824-30. https://doi.org/10.34248/bsengineering.1619839.
EndNote
Kalınay G, Duru İ, Tabaru TE, Kaburcuk F (01 Mayıs 2025) A Cost-Effective Wide-Band Antenna for 5G Communication Systems. Black Sea Journal of Engineering and Science 8 3 824–830.
IEEE
[1]G. Kalınay, İ. Duru, T. E. Tabaru, ve F. Kaburcuk, “A Cost-Effective Wide-Band Antenna for 5G Communication Systems”, BSJ Eng. Sci., c. 8, sy 3, ss. 824–830, May. 2025, doi: 10.34248/bsengineering.1619839.
ISNAD
Kalınay, Gürkan - Duru, İremnur - Tabaru, Timuçin Emre - Kaburcuk, Fatih. “A Cost-Effective Wide-Band Antenna for 5G Communication Systems”. Black Sea Journal of Engineering and Science 8/3 (01 Mayıs 2025): 824-830. https://doi.org/10.34248/bsengineering.1619839.
JAMA
1.Kalınay G, Duru İ, Tabaru TE, Kaburcuk F. A Cost-Effective Wide-Band Antenna for 5G Communication Systems. BSJ Eng. Sci. 2025;8:824–830.
MLA
Kalınay, Gürkan, vd. “A Cost-Effective Wide-Band Antenna for 5G Communication Systems”. Black Sea Journal of Engineering and Science, c. 8, sy 3, Mayıs 2025, ss. 824-30, doi:10.34248/bsengineering.1619839.
Vancouver
1.Gürkan Kalınay, İremnur Duru, Timuçin Emre Tabaru, Fatih Kaburcuk. A Cost-Effective Wide-Band Antenna for 5G Communication Systems. BSJ Eng. Sci. 01 Mayıs 2025;8(3):824-30. doi:10.34248/bsengineering.1619839

                           24890