TY - JOUR
T1 - Efficient Design of Super-Directive Antenna Array Using Schelkunoff Method and Genetic Algorithm
AU - Hamza, Abubakar Muhammad
AU - Sheikh, Sharif I. M.
AU - Attia, Hussein
PY - 2024/9/6
Y1 - 2024/9/6
N2 - Tightly packed super-directive antenna arrays with complex excitation functions are of recent interest in space communication. In this article, Schelkunoff polynomials and genetic algorithms (GA) are used to formulate the super-directive array excitation functions. The proposed technique used to calculate the antenna properties considerably reduces solver time compared with professional simulators. A packed linear array with an antenna aperture of 2.85λ and element spacing of 0.3λ (center-to-center) is designed to demonstrate a 66.67% increase in directivity, reduced sidelobes, and improved null accuracy as proof of concept. The calculated antenna responses agree well with the results of a professional simulator (HFSS), where the proposed method requires 90% less calculation time compared with the simulator. The experimental results verify the predicted responses and demonstrate a 5-dB increase in the antenna directivity compared with a conventional array.
AB - Tightly packed super-directive antenna arrays with complex excitation functions are of recent interest in space communication. In this article, Schelkunoff polynomials and genetic algorithms (GA) are used to formulate the super-directive array excitation functions. The proposed technique used to calculate the antenna properties considerably reduces solver time compared with professional simulators. A packed linear array with an antenna aperture of 2.85λ and element spacing of 0.3λ (center-to-center) is designed to demonstrate a 66.67% increase in directivity, reduced sidelobes, and improved null accuracy as proof of concept. The calculated antenna responses agree well with the results of a professional simulator (HFSS), where the proposed method requires 90% less calculation time compared with the simulator. The experimental results verify the predicted responses and demonstrate a 5-dB increase in the antenna directivity compared with a conventional array.
KW - Directivity
KW - Schelkunoff
KW - genetic algorithm (GA)
KW - microstrip array
KW - super-directive
UR - http://www.scopus.com/inward/record.url?scp=85210906237&partnerID=8YFLogxK
U2 - 10.1109/ICJECE.2024.3396287
DO - 10.1109/ICJECE.2024.3396287
M3 - Journal article
SN - 2694-1783
VL - 47
SP - 168
EP - 174
JO - IEEE Canadian Journal of Electrical and Computer Engineering
JF - IEEE Canadian Journal of Electrical and Computer Engineering
IS - 4
ER -