Indonesian Journal of Electrical Engineering and Computer Science
Vol 34, No 1: April 2024

For wireless LAN application, microstrip patch antenna design in S-band

Md. Sohel Rana (Northern University of Business and Technology (NUBTK))
Md. Soriful Islam Sourav (Northern University of Business and Technology (NUBTK))
Md. Abdulla Al Mamun (Northern University of Business and Technology (NUBTK))
Omer Faruk (Northern University of Business and Technology (NUBTK))
Md. Mominur Rahaman (Northern University of Business and Technology (NUBTK))
Md. Shehab Uddin Shahriar (Northern University of Business and Technology (NUBTK))
Sukanto Halder (Northern University of Business and Technology (NUBTK))
Md. Toukir Ahmed (Bangabandhu Sheikh Mujibur Rahman Digital University)
Imran Chowdhury (Northern University Bangladesh (NUB))
Omar Faruq (Bangladesh University of Engineering and Technology)
Saikat Mondal (Northern University of Business and Technology)
Md. Hasibul Islam (Northern University of Business and Technology Khulna)
Shubhra Kanti Sinha Shuva (Independent University Bangladesh (IUB))



Article Info

Publish Date
01 Apr 2024

Abstract

This article presents a 3.5 GHz rectangular microstrip patch antenna (RMPA) designed, studied, and analyzed for wireless LAN applications. Using Fr-4 as substrate material, whose dielectric permittivity is 4.3, patch thickness is 1.65 mm, and loss tangent is 0.025. A feeding line with an impedance of 50 Ω is utilized to supply the antenna with power. Computer simulation technology (CST) software has been used to design the antenna and origin pro software has been used to display the resulting figures from the simulation. The antenna simulation showed that the return loss is -56.82 dB; the directivity gain is 6.02 dBi, the bandwidth is 0.148 GHz, and the voltage standing wave ratio (VSWR) is 1.0028. The paper aims to increase the return loss, develop a standard VSWR, increase the directivity gain of the antenna, and improve the antenna bandwidth. The results of the proposed antenna were much better than previously published papers, which were suitable for wireless applications. This proposed antenna can be used for future wireless LAN applications.

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