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Spectrally Constrained Unimodular Sequence Design without Spectral Level Mask

  • Yang Jing
  • , Junli Liang*
  • , Deyun Zhou
  • , Hing Cheung So
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Due to the freedom degree loss resulted from the unimodular constraints, it is not easy to specify proper and feasible stopband and passband levels for frequency grids of interest in spectrally constrained sequence design problems. In an attempt to avoid this difficulty, we devise a cost function that minimizes the ratio of the maximal stopband level to the minimal passband level. Next, we introduce auxiliary variables to simplify the optimization problem via decoupling the numerator and denominator. Then, the feasible solution is obtained by approximating the nondifferentiable objective function with a smooth function. We also apply an acceleration scheme to increase the algorithm convergence speed. The effectiveness of the proposed algorithm is demonstrated via numerical examples.
Original languageEnglish
Pages (from-to)1004-1008
JournalIEEE Signal Processing Letters
Volume25
Issue number7
Online published14 May 2018
DOIs
Publication statusPublished - Jul 2018

Research Keywords

  • Acceleration
  • Active sensing
  • Approximation algorithms
  • Convergence
  • Linear programming
  • Passband
  • Sequence design
  • Shape
  • Signal processing algorithms
  • Spectral level

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