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Design and Development of Novel Patch Antenna for 5G Applications


Affiliations
1 Department of Mathematics, Anna University, Tiruchirapalli, India
2 Department of Information and Communication Engineering, Anna University, Tiruchirapalli, India
     

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Antenna design plays vital role in developing the faster communication technology like 5G. In this paper novel patch antenna is presented for 5G communication under 6GHz band frequency. In this paper rectangular and circular patch antenna configuration were combined to develop a new kind of antenna for enhanced 5G applications working in 4.5GHz resonant frequency. This antenna is developed over FR4 substrate with 1.6mm height of substrate and dielectric permittivity of 4.4 with the dimension of 40 mm width and 50mm length. The copper patch is designed over the substrate at the height of 0.035mm. This antenna is designed and simulated in CST Microwave studio v2018. The performance of the proposed design is found satisfactory and the results obtained are as follows, return loss -37.92dB, VSWR 1.025, bandwidth of 340MHz, and the gain of the proposed antenna is found to be 4.14dB in the resonant frequency 4.5GHz. This novel patch antenna is suitable for 5G Communication.

Keywords

Microstrip Patch Antenna, 5G Communication, CST.
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  • Design and Development of Novel Patch Antenna for 5G Applications

Abstract Views: 297  |  PDF Views: 1

Authors

G. Geetharamani
Department of Mathematics, Anna University, Tiruchirapalli, India
T. Aathmanesan
Department of Information and Communication Engineering, Anna University, Tiruchirapalli, India

Abstract


Antenna design plays vital role in developing the faster communication technology like 5G. In this paper novel patch antenna is presented for 5G communication under 6GHz band frequency. In this paper rectangular and circular patch antenna configuration were combined to develop a new kind of antenna for enhanced 5G applications working in 4.5GHz resonant frequency. This antenna is developed over FR4 substrate with 1.6mm height of substrate and dielectric permittivity of 4.4 with the dimension of 40 mm width and 50mm length. The copper patch is designed over the substrate at the height of 0.035mm. This antenna is designed and simulated in CST Microwave studio v2018. The performance of the proposed design is found satisfactory and the results obtained are as follows, return loss -37.92dB, VSWR 1.025, bandwidth of 340MHz, and the gain of the proposed antenna is found to be 4.14dB in the resonant frequency 4.5GHz. This novel patch antenna is suitable for 5G Communication.

Keywords


Microstrip Patch Antenna, 5G Communication, CST.

References