A Miniaturized Dual L Shaped with Truncated Ground Rectangular Monopole Antenna for 5G and Wireless Communications

Shankar Saran Chaudhary*, Deepika Verma**, Chandan***
*-*** Dr. Ram Manohar Lohia Avadh University, Ayodhya, Uttar Pradesh, India.
Periodicity:July - December'2024
DOI : https://doi.org/10.26634/jcs.13.2.20992

Abstract

This paper presents the design and analysis of a miniaturized dual L-shaped inverted to each other dual-band monopole antenna intended for 5G and wireless communication applications. The proposed antenna, with compact dimensions of 20×20×1.6 mm3, operates in two frequency bands (3.2-3.6 GHz)/3.5GHz and (6.0-6.6 GHz)/6.5GHz. These frequency bands are critical for 5G technology, ensuring high-speed data transfer and improved network efficiency. The antenna achieves bandwidths of 11.7% and 9.3% for the lower and upper bands, respectively, offering robust performance and adaptability in diverse wireless communication scenarios. The design employs a dual L shape inverted to each other configuration with truncated L shaped ground plane to achieve the desired miniaturization and dual-band functionality. The antenna's performance metrics, including return loss, gain, and radiation patterns, demonstrate its suitability for integration into compact wireless devices, thereby advancing the development of efficient and space-saving 5G communication systems.

Keywords

Dual Band, Miniaturized Dual L Shaped, Truncated Ground Rectangular Monopole Antenna Wireless Communication, Rectangular Patch, 5G Application

How to Cite this Article?

Chaudhary, S. S., Verma, D., and Chandan. (2024). A Miniaturized Dual L Shaped with Truncated Ground Rectangular Monopole Antenna for 5G and Wireless Communications. i-manager’s Journal on Communication Engineering and Systems, 13(2), 15-21. https://doi.org/10.26634/jcs.13.2.20992

References

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[14]. Singh, A. K., Mishra, R. P., Ratnesh, R. K., & Tiwari, P. (2023). Defected ground structure with four band meander-shaped monopole antenna for LTE/WLAN/ WIMAX/Long distance radio telecommunication applications. In Intelligent Systems and Smart Infrastructure (pp. 538-548). CRC Press.
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