Optimal synthesis of wideband shaped-beam array antenna through convex optimization

A linear-programming (LP) framework is introduced for the synthesis of wideband shaped-beam patterns produced by uniform linear arrays (ULAs). The single-frequency feasibility-based LP formulation is extended to a multi-frequency power mask by sampling the normalized spatial frequency on a joint frequency-angle grid. Two hybrid escalation-bisection algorithms are then proposed to identify, with a small number of LP solves, the maximum fractional bandwidth (FBW) compliant with arbitrary upper/lower mask bounds. The non-uniqueness of the spectral factorization recovering the excitations from the synthesized autocorrelation polynomial is exploited: among the admissible solutions, the candidate minimizing the dynamic range ratio (DRR) is selected, yielding a hardware-friendly excitation taper at no additional optimization cost. Numerical results, including flat-top and cosecant-squared masks, are reported to validate and assess the proposed synthesis method.

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Publication Details

Journal
Journal of Electromagnetic Waves and Applications
Published
2026-10-06
DOI
https://doi.org/10.1080/09205071.2026.2742941
Primary Topic
Antenna Design and Optimization
Type
article
Field-Weighted Citation Impact
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article

Optimal synthesis of wideband shaped-beam array antenna through convex optimization

Alessandro Polo, Paolo Rocca, A. Massa, L. T. P. Bui
Journal of Electromagnetic Waves and Applications
Antenna Design and Optimization
article

Optimal synthesis of wideband shaped-beam array antenna through convex optimization

Alessandro Polo, Paolo Rocca, A. Massa, L. T. P. Bui
article en

Abstract

A linear-programming (LP) framework is introduced for the synthesis of wideband shaped-beam patterns produced by uniform linear arrays (ULAs). The single-frequency feasibility-based LP formulation is extended to a multi-frequency power mask by sampling the normalized spatial frequency on a joint frequency-angle grid. Two hybrid escalation-bisection algorithms are then proposed to identify, with a small number of LP solves, the maximum fractional bandwidth (FBW) compliant with arbitrary upper/lower mask bounds. The non-uniqueness of the spectral factorization recovering the excitations from the synthesized autocorrelation polynomial is exploited: among the admissible solutions, the candidate minimizing the dynamic range ratio (DRR) is selected, yielding a hardware-friendly excitation taper at no additional optimization cost. Numerical results, including flat-top and cosecant-squared masks, are reported to validate and assess the proposed synthesis method.

Journal of Electromagnetic Waves and Applications
Electric Power University (VN), University of Trento (IT)
Openalex Percentile: Top 16%
Antenna Design and Optimization
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Optimal synthesis of wideband shaped-beam array antenna through convex optimization — Alessandro Polo, Paolo Rocca, et al. · Journal of Electromagnetic Waves and Applications (2026) | TGRS Research Map | TGRS