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P-ISSN: 2971-785X
E-ISSN: 3141-4095

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Volume 1, Issue 1

Research Article

Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems

Published: December 14, 2023 | Volume: 1 | Issue: 1

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View Count: 20 Page No: 56-61

Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems

K. A. OJIKUTU1 corresponding author email *, F. 1. ANYASI2 , S. A. OJOMU3

Published: December 14, 2023 | Issue: Volume 1, Issue 1

Page No. 56–61

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Corresponding Author: K. A. OJIKUTU

Email: kazoji2002@yahoo.com

1 Department of Electrical and Electronics Engineering, Faculty of Engineering, University of Cross River

2 Department of Electrical and Electronics Engineering, Faculty of Engineering, University of Cross River

3 Department of Electrical and Electronics Engineering, Faculty of Engineering, University of Cross River

Received: November 20, 2023 Reviewed: November 29, 2023 Accepted: December 14, 2023

Abstract

Because of the growth of communication devices and systems, frequencies are becoming more suitable for the size and performance of this type of antenna. High dielectric constant materials are employed to accomplish greater size reduction due to recent developments in semiconductor technology, making it particularly helpful and popular in the design of mobile devices and wireless systems. However, microstrip patch antennas have limitations due to their small bandwidth and poor strength. In view of this, a 2.4 GHz rectangular microstrip patch antenna for wireless communication is presented with a substrate flame Retardant (FR4). This material has a thickness of 1.6 mm and a dielectric permittivity of 4.3. The antenna layout is simulated using the CST Studio suite. The result obtained has a lower return loss, higher gain, lower VSWR and a better directivity, and more importantly, an efficient operation within the S-band. The simulation revealed that the return loss, gain, VSWR and gain were correspondingly -27.01 dB, 6.75 dBi, 1.7 dB. The efficiency was 89.56%. It operates efficiently within frequencies 2.3716 GHz – 2.4361 GHz. The results from the simulation is better than the ones done in the recent past when benchmarked with similar designed. It will be efficient for wireless system communication in S-Band at its prescribed range.

Keywords: CST, Flame Retardant (FR4), Microstrip Patch Antenna, Return Loss, Wireless communication.

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APA
K. A. OJIKUTU et al. (2023). Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems. Nigerian Journal of Engineering Research, 1(1), 56-61. https://izlik.org/JA28WS58XL
AMA
K. A. OJIKUTU et al. Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems. Nigerian Journal of Engineering Research. 2023;1(1):56-61. https://izlik.org/JA28WS58XL
Chicago
K. A. OJIKUTU et al. 2023. \"Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems\". Nigerian Journal of Engineering Research 1 (1): 56-61. https://izlik.org/JA28WS58XL.
IEEE
[1] K. A. OJIKUTU et al., \"Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems\", Nigerian Journal of Engineering Research, vol. 1, no. 1, pp. 56-61, Dec 2023. [Online]. Available: https://izlik.org/JA28WS58XL
MLA
K. A. OJIKUTU et al. \"Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems\". Nigerian Journal of Engineering Research, vol. 1, no. 1, Dec 2023, pp. 56-61, https://izlik.org/JA28WS58XL.
Vancouver
1. K. A. OJIKUTU et al. Design and Analysis of a Rectangular Microstrip Patch Antenna for S-Band Wireless Communication Systems. Nigerian Journal of Engineering Research [Internet]. 2023 Dec. 14;1(1):56-61. Available from: https://izlik.org/JA28WS58XL

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