A compact wideband monopole antenna with DGS for WiMAX/WLAN/5G applications

Author:

Saumya Gupta1,Samar Pratap Rai1,Chandan 1,Ashutosh Kumar Singh1

Affiliation:

1. Dr. Ram Manohar Lohia Avadh University

Abstract

In this research, a complex wideband antenna with different applications in wireless communication devices is proposed. The proposed wideband antenna resonates at different four frequencies, which include the wireless devices band, an Ultra-Wideband (UWB), and an X-band. This rectangle-shaped antenna with additional stub antennas has FR4 material used as a substrate with dimensions of (26 × 40 × 1.6 mm3). The resulting resonant frequencies cover Wireless Local-Area Network (WLAN) at 2 GHz and 5.3 GHz, Multiple Input Multiple Output (MIMO) at 6.7 GHz, and X-band at 8.7 GHz. The implementation of Defected Ground Structure (DGS) facilitates the reduction in size and increase in antenna performance, and by using the additional stubs, it provides a multi-sharpened band. It has an omnidirectional radiation pattern. Simulation results show that the proposed antenna provides a wide range of frequencies (4-9 GHz).

Publisher

i-manager Publications

Subject

General Medicine

Reference10 articles.

1. Wideband MIMO Antenna Array Covering 3.3–7.1 GHz for 5G Metal-Rimmed Smartphone Applications

2. Design of a Compact Monopole Antenna for UWB Applications

3. Kemtchang, R. D., Konditi, D. B., & Mwangi, E. (2018). Design of a 2GHz Microstrip Antenna for Wireless Application using Cross-Shaped Patch Aperture. International Journal of Engineering Research and Technology, 11(5), 805-818.

4. Mahmud, M. Z., Islam, M. T., Misran, N., Almutairi, A. F., & Cho, M. (2018). Ultra-wideband (UWB) antenna sensor based microwave breast imaging: A review. Sensors, 18(9), 2951.

5. Mat, D. A. A., Hui, L. Y., Zaidel, D. N. A., Ping, K. H., & Sahrani, S. (2022). Design of Compact Monopole Antenna with U-Shaped Defected Ground Structure (DGS) for UWB Application. Journal of Telecommunication, Electronic and Computer Engineering (JTEC), 14(3), 11-15.

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