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ISSN E 2409-2770
ISSN P 2521-2419

A Noval High Gain Compact Antenna for 5G Wireless Communication


Muhammad Yasir Khan, Muhammad Irfan Khattak, Waqar Hussain


Vol. 11, Issue 02, PP. 38-45, February 2024

DOI

Keywords: Micro strip patch antenna, Gain, Radiation Efficiency, Main lobe, Side lobe levels

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In this paper, a novel micro strip patch antenna, which contains the integration of triangular and inverted T-shaped slots on the radiating patch, for attaining high gain properties bandwidth while maintaining a well-matched impedance, is proposed. The novel approach involves precisely designed two symmetric triangular slots on both sides of the patch, each covering an area of, four distinct extrusions along the patch edges, with an area of for each extension, and two inverted T-shaped slots, measuring in length and in width, are precisely positioned at a separation distance. It is revealed from the simulations that the proposed design of slotted antenna has an impressive 1.93GHz impedance bandwidth at center frequency of 28GHz with a return loss of -47.55dB. The antenna achieved a higher gain of 8.1dB. The radiation pattern exhibits a peak at 0 degrees, low side lobe levels at -14dB, and minimal back lobe radiation, with a half-power beam width spanning 75.5 degrees, contributing to its versatility. The antenna boasts an exceptional radiation efficiency of 90%, reflecting a well-matched impedance and impressive performance characteristics. This innovative micro strip patch antenna design represents a significant advancement in the field, offering enhanced gain, bandwidth, and overall performance for 5G wireless communication systems.


  1. Muhammad Yasir Khan, , University of Engineering and Technology, Peshawar, Pakistan.
  2. Muhammad Irfan Khattak, , University of Engineering and Technology, Peshawar, Pakistan.
  3. Waqar Hussain, , University of Engineering and Technology, Peshawar, Pakistan.

Muhammad Yasir Khan Muhammad Irfan Khattak Waqar Hussain “A Noval High Gain Compact Antenna for 5G Wireless Communication” International Vol. 11 Issue 02 PP. 38-45 February 2024. https://doi.org/10.34259/ijew.24.11023845.


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