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Low sidelobe planar electrically large sparse array antenna with element number reduction based on genetic algorithm

Yangkun Zhu, Wenyu Ma, Chuang Wang, Wenquan Cao

2024IET Microwaves Antennas & Propagation12 citationsDOIOpen Access PDF

Abstract

Abstract Conventionally, both electrically larger (EL) arrays and sparse arrays offer the advantage of element number reduction but disadvantage of high sidelobe levels. A new scheme of planar EL sparse array antenna based on a genetic algorithm (GA) to achieve low sidelobe with element number reduction is proposed. To begin with, EL sparse array antenna optimisation models based on GA for both linear and planar arrays are analysed. Then, an EL slot antenna element based on a 3 × 3 substrate integrated waveguide cavity is designed. An 8‐element linear EL sparse array antenna is designed and compared with a uniform array antenna, demonstrating a reduction in the maximum sidelobe level (MSLL) by nearly 4.6 dB. After that, a 4 × 8 element planar EL sparse array antenna is fabricated and measured. Compared to an 8 × 16 element planar EL uniform array antenna, the number of antenna elements is reduced by 75%, while the MSLL is reduced by approximately 3 dB. The measured −10 dB impedance bandwidth ranges from 25.3 to 27.8 GHz. At the central frequency, the radiation pattern achieves a peak gain of 29.6 dBi, exhibiting low sidelobe levels below −15.0 dB.

Topics & Concepts

Planar arrayAntenna arrayPlanarSparse arrayAntenna (radio)Reduction (mathematics)OpticsComputer scienceMathematicsPhysicsAlgorithmTelecommunicationsGeometryComputer graphics (images)Antenna Design and OptimizationMicrowave Engineering and WaveguidesAntenna Design and Analysis
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