Design of an improved microstrip antenna operating at a frequency band of 28GHz

Fuente: arXiv
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Main Authors: Zakariyya, S. O., Sadiq, B. O., Alao, R. A., Adesina, J. A., Obi, E.
Format: Preprint
Published: 2024
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author Zakariyya, S. O.
Sadiq, B. O.
Alao, R. A.
Adesina, J. A.
Obi, E.
author_facet Zakariyya, S. O.
Sadiq, B. O.
Alao, R. A.
Adesina, J. A.
Obi, E.
contents The design of an improved microstrip antenna operating in the 28 GHz frequency spectrum is the main goal of this work. The design used a Roger RT 5880 LZ substrate with a thickness and permittivity of 0.762mm and 1.96, respectively. The antenna was simulated in CST Microwave Studio. As the antenna feed, a quarter-wave transformer was used to provide an impedance match of 50 ohms. To improve the antenna's performance, a Ushaped element was added to the ground plane. The antenna resonated at 28 GHz frequency, according to simulation data, with a return loss of -21.4 dB, VSWR of 1.18, bandwidth of 2.026 GHz, and gain of 8.19 dB. The proposed antenna exhibits a performance improvement in terms of gain and bandwidth due to the addition of U-shaped element when benchmarked with existing designs in the literature work
format Preprint
id arxiv_https___arxiv_org_abs_2412_20400
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Design of an improved microstrip antenna operating at a frequency band of 28GHz
Zakariyya, S. O.
Sadiq, B. O.
Alao, R. A.
Adesina, J. A.
Obi, E.
Signal Processing
Emerging Technologies
Networking and Internet Architecture
The design of an improved microstrip antenna operating in the 28 GHz frequency spectrum is the main goal of this work. The design used a Roger RT 5880 LZ substrate with a thickness and permittivity of 0.762mm and 1.96, respectively. The antenna was simulated in CST Microwave Studio. As the antenna feed, a quarter-wave transformer was used to provide an impedance match of 50 ohms. To improve the antenna's performance, a Ushaped element was added to the ground plane. The antenna resonated at 28 GHz frequency, according to simulation data, with a return loss of -21.4 dB, VSWR of 1.18, bandwidth of 2.026 GHz, and gain of 8.19 dB. The proposed antenna exhibits a performance improvement in terms of gain and bandwidth due to the addition of U-shaped element when benchmarked with existing designs in the literature work
title Design of an improved microstrip antenna operating at a frequency band of 28GHz
topic Signal Processing
Emerging Technologies
Networking and Internet Architecture
url https://arxiv.org/abs/2412.20400