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On bandwidth maximization of fixed-geometry arrays through convex programming

Author

Listed:
  • L. T. P. Bui
  • N. Anselmi
  • T. Isernia
  • P. Rocca
  • A. F. Morabito

Abstract

We propose a new approach to solve the problem of optimal power synthesis of array antennas, so that maximum possible bandwidth can be granted to fixed sidelobe-level performances. The proposed approach can be applied to any kind of fixed-geometry array that radiates pencil beams and to linear equispaced arrays that generate shaped patterns. The designing problem is cast as a sequence of Convex Programming optimizations. Numerous numerical experiments, including full-wave synthesis of realistic antennas, were carried out and their results discussed here to assess the array antennas’ capability of achieving ultra-wideband performances.

Suggested Citation

  • L. T. P. Bui & N. Anselmi & T. Isernia & P. Rocca & A. F. Morabito, 2020. "On bandwidth maximization of fixed-geometry arrays through convex programming," Journal of Electromagnetic Waves and Applications, Taylor & Francis Journals, vol. 34(5), pages 581-600, March.
  • Handle: RePEc:taf:tewaxx:v:34:y:2020:i:5:p:581-600
    DOI: 10.1080/09205071.2020.1724832
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