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Field‐matching at the compact SIW horn antenna aperture using genetic algorithm

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AbstractA compact substrate integrated waveguide (SIW) horn antenna is proposed with improvements in antenna gain and back lobe level. By pixelating the metal part of the antenna aperture and considering the presence or absence of metal in each pixel using Genetic Algorithm (GA), the electromagnetic field distribution could be controlled especially in the front panel of the antenna. As a result, an increase of 4 dBi occurs in gain and back lobe level is 10.8 dB better than the conventional SIW horn antenna. The proposed antenna works at the frequency of 30.2 GHz and without adding any parts to conventional SIW Horn antenna we do not leave the antenna in compact mode. In order to verify the simulation results, two commercial software has been used and the results are good both in CST and HFSS.
Title: Field‐matching at the compact SIW horn antenna aperture using genetic algorithm
Description:
AbstractA compact substrate integrated waveguide (SIW) horn antenna is proposed with improvements in antenna gain and back lobe level.
By pixelating the metal part of the antenna aperture and considering the presence or absence of metal in each pixel using Genetic Algorithm (GA), the electromagnetic field distribution could be controlled especially in the front panel of the antenna.
As a result, an increase of 4 dBi occurs in gain and back lobe level is 10.
8 dB better than the conventional SIW horn antenna.
The proposed antenna works at the frequency of 30.
2 GHz and without adding any parts to conventional SIW Horn antenna we do not leave the antenna in compact mode.
In order to verify the simulation results, two commercial software has been used and the results are good both in CST and HFSS.

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