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Adaptively Iterative FFT-Based Phase-Only Synthesis for Multiple Elliptical Beam Patterns with Low Sidelobes

作者:Yuxuan Ding, Yunhua Zhang, Xiaowen Zhao · 发表于:Electronics · 年份:2025 · DOI:10.3390/electronics14071310 · 被引用次数:2 · 研究领域:Antenna Design and Optimization、Advanced Antenna and Metasurface Technologies、Microwave Engineering and Waveguides

In this paper, an adaptive iterative Fourier technique (AIFT) algorithm is developed for the synthesis of multiple circular/elliptical beams with low sidelobe levels (SLLs) through phase-only optimization. The key innovation of the AIFT algorithm is the introduction of an elliptical beam model, which facilitates the adaptive determination of main beam regions and offers additional flexibility in controlling pencil beam shapes. Unlike conventional IFT-based algorithms, the AIFT algorithm eliminates the need for prior knowledge of main beam regions and avoids repetitive adjustments of sidelobe correction thresholds. This not only simplifies the configuration process but also prevents the generation of defective radiation patterns. Extensive synthesis experiments with different beam numbers, distributions, and ellipticities demonstrate that the elliptical beam model consistently outperforms its circular counterpart in multibeam scenarios, achieving lower SLL and higher directivity. These advantages are particularly pronounced in asymmetrical beam distributions, highlighting the elliptical beam’s superior potential for reducing SLLs of multi-spot-beam patterns and offering new insights for advancing the performance of point-to-multi-point communication systems.