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An innovative multislotted microstrip patch antenna design for wireless applications is shown in this abstract. The need for fast wireless communication systems is growing, and this calls for the creation of small, effective antennas. Multiple slots are incorporated into the microstrip patch structure of the suggested antenna design in order to optimise performance attributes like greater directivity, decreased return loss, and improved bandwidth. The choice of an appropriate substrate material with the required dielectric properties is the first step in the design process. In order to achieve the required resonance frequency and impedance matching, the patch's geometry is optimised. The antenna's performance parameters are then enhanced by carefully introducing slots into the patch construction. An essential component of wireless communication systems is antenna bandwidth expansion, which is made possible by the slots in the patch structure. Additionally, the slots improve the antenna's ability to match impedance and lower return loss. Additionally, the multislotted design improves the antenna's directivity, which boosts signal strength and coverage.
Parameswari et al. (Wed,) studied this question.