Research Article |
16-Elements Ring Shaped MIMO Antenna Design for 5G Wireless Communication
Author(s): Megha Soni*, Ajay Dadoriya, and Leeladhar Malviya
Published In : International Journal of Electrical and Electronics Research (IJEER) Volume 12, Issue 4
Publisher : FOREX Publication
Published : 30 December 2024
e-ISSN : 2347-470X
Page(s) : 1508-1512
Abstract
The most popular area of study in wireless communication is Fifth Generation (5G). In this paper, a 5G MIMO antenna with a wide bandwidth, large gain, and compact structure is designed. The suggested design has two input and two output ports, with eight octagonal randomly shaped patches designed with Rogers RT5880 substrate in a building from the front and stripped from the bottom sort of arrangement. On CST-Microwave Studio, the entire designing and simulation process is carried out. Several characteristic parameters have been determined in this research using CST software. Broadband from 32GHz to 35 GHz and -43.62 return losses achieved at 33.56 GHz frequency with the proposed design. More than 9.6 dBi gain is also achieved with the proposed antenna. The antenna is broadband, very compact, with high gain and efficiency.
Keywords: ECC
, MIMO
, Wireless communication
, 5G
.
Megha Soni*, Deaprtment of Electronics and Communication, Amity University Gwalior, India; Email: soni_megha1987@yahoo.co.in
Ajay Dadoriya, Deaprtment of Electronics and Communication, Amity University Gwalior, India; Email: akdadoria@gwa.amity.edu
Leeladhar Malviya, Department of Electronics and Telecommunication, Shri G.S. Institute of Technology and Science Indore, India; Email: ldmalviya@gmail.com
-
[1] Y. Li, C.-Y.-D. Sim, Y. Luo, and G. Yang, “High-isolation 3.5 GHz eight-antenna MIMO array using balanced open-slot antenna element for 5G smart phones,” IEEE Trans. Antennas Propag., vol. 67, no. 6, pp. 3820-3830, Jun. 2019.
-
[2] H.-T. Hu, F.-C. Chen and Q.-X. Chu, “A wideband u-shaped slot antenna and its application in MIMO terminals,” IEEE Antennas Wireless Propag. Lett, vol. 15, pp. 508-511, Jul. 2015.
-
[3] D. Sarkar and K. V. Srivastava, “A compact four-element MIMO/diversity antenna with enhanced bandwidth,” IEEE Antennas Wireless Propag. Lett. vol. 16, pp. 2469-2472, Jul. 2017.
-
[4] G. Zhai, Z. N. Chen, and X. Qing, “Enhanced isolation of a closely spaced four-element MIMO antenna system using metamaterial mushroom,” IEEE Trans. Antennas Propag., vol. 63, no. 8, pp. 3362- 3370, Aug. 2015.
-
[5] S. S. Jehangir and M. S. Sharawi, “A miniaturized UWB biplanarYagilike MIMO antenna system,” IEEE Antennas Wireless Propag. Lett. vol. 16, pp. 2320-2323, Jun. 2017.
-
[6] R. Anitha, P. V. Vinesh, K. C. Prakash, P. Mohanan, and K. Vasudevan, “A compact quad element slotted ground wideband antenna for MIMO applications,” IEEE Trans. Antennas Propag., vol. 64, no. 10, pp. 4550- 4553, Oct. 2016.
-
[7] S. K. Dhar, M. S. Sharawi, O. Hammi, and F. M. Ghannouchi, “An active integrated ultra-wideband MIMO antenna,” IEEE Trans. Antennas Propag., vol. 64, no. 4, pp. 1573-1578, Apr. 2016.
-
[8] H. Zhai, L. Xi, Y. Zang, and L. Li, “A low-profile dual-polarized high isolation MIMO antenna arrays for wideband base-station applications,” IEEE Trans. Antennas Propag., vol. 63, no. 8, pp. 3362-3370, Aug. 2015.
-
[9] Malviya L., Panigrahi R.K., and Kartikeyan M.V., “A Multi-Standard, Wide Band 2x2 Compact MIMO Antenna with Ground Modification Techniques”, International Journal of Microwave and Optical Technology, vol.11, 2016, pp. 259-266.
-
[10] Pant M, Malviya L, Choudhary V. “A 28 GHz Corporate Series-Fed Taper Antenna Array for Fifth-Generation Wireless Communication”. In Mobile Radio Communications and 5G Networks 2021 (pp. 697-705). Springer, Singapore
-
[11] Malviya L., Panigrahi R.K., and Kartikeyan M.V., “Circularly Polarized 2 x 2 MIMO Antennas for WLAN Applications”, Progress in Electromagnetic Research C, vol. 66, 2016, pp. 97-107.
-
[12] Malviya L, Parmar A, Solanki D, Gupta P & Malviya P. Highly isolated inset-feed 28 GHz MIMO-antenna array for 5G wireless application. In Mobile Radio Communications and 5G Networks 2021 (pp. 401-408). Springer, Singapore
-
[13] A. Pandey, A. K. Singh, V. Yadav, S. Singh and R. Singh, "An ultra-wideband (UWB) MIMO Antenna for 5G Applications," 2021 6th International Conference on Communication and Electronics Systems (ICCES), 2021, pp.420-425, doi 10.1109/ICCES51350.2021.9488966.
-
[14] Y. Gillani, M. U. Khan, A. Ghalib, R. Hussain, M. S. Sharawi and R. Mittra, "Integrated 4-Element MIMO Antenna and mm-Wave Arrays for 5G Access Points," 2020 IEEE International Symposium on Antennas and Propagation and North American Radio Science Meeting, 2020, pp. 1361-1362, doi:10.1109/ IEEECONF35879.2020.9330044.
-
[15] A. M. Saleh, K. R. Mahmoud, M. M. Elmesalawy and I. I. Ibrahim, "MIMO Wideband Circularly Polarized Patch Antenna Array for 5G Millimeter-Wave Systems," 2021 International Conference on Computer Communication and Informatics (ICCCI), 2021, pp 1-5, doi: 10.1109/ICCCI50826.2021.9402419.
-
[16] Ahmad, Ashfaq,Choi, Dong-you, Ullah, Sadiq, 2022, “A compact two elements MIMO antenna for 5G communication”, JO - Scientific Reports, 3608, 12, 1, SN - 2045-2322, https://doi.org/10.1038/s41598-022-07579-5, 10.1038/s41598-022-07579-5