• DocumentCode
    47925
  • Title

    Add-Equalize Structures for Linear-Phase Nyquist FIR Filter Interpolators and Decimators

  • Author

    Johansson, Hakan ; Eghbali, Amir

  • Author_Institution
    Dept. of Electr. Eng., Linkoping Univ., Linkoping, Sweden
  • Volume
    61
  • Issue
    6
  • fYear
    2014
  • fDate
    Jun-14
  • Firstpage
    1766
  • Lastpage
    1777
  • Abstract
    This paper introduces add-equalize structures for the implementation of linear-phase Nyquist (M th-band) finite-length impulse response (FIR) filter interpolators and decimators. The paper also introduces a systematic design technique for these structures based on iteratively reweighted ℓ1-norm minimization. In the proposed structures, the polyphase components share common parts which leads to a considerably lower implementation complexity as compared to conventional single-stage converter structures. The complexity is comparable to that of multi-stage Nyquist structures. A main advantage of the proposed structures is that they work equally well for all integer conversion factors, thus including prime numbers which cannot be handled by the regular multi-stage Nyquist converters. Moreover, the paper shows how to utilize the frequency-response masking approach to further reduce the complexity for sharp-transition specifications. It also shows how the proposed structures can be used to reduce the complexity for reconfigurable sampling rate converters. Several design examples are included to demonstrate the effectiveness of the proposed structures.
  • Keywords
    FIR filters; frequency response; interpolation; iterative methods; linear phase filters; minimisation; add-equalize structures; finite-length impulse response filter; frequency-response masking approach; integer conversion factors; iteratively reweighted ℓ1-norm minimization; linear-phase Nyquist FIR filter decimators; linear-phase Nyquist FIR filter interpolators; multistage Nyquist converter structures; prime numbers; reconfigurable sampling rate converters; sharp-transition specifications; single-stage converter structures; systematic design technique; Complexity theory; Finite impulse response filters; Interpolation; Minimization; Periodic structures; Systematics; Transfer functions; $ell _{1}$-norm minimization; FIR filters; Nyquist filters; fractional-delay filters; interpolation and decimation; linear-phase filters; low complexity;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems I: Regular Papers, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1549-8328
  • Type

    jour

  • DOI
    10.1109/TCSI.2013.2295021
  • Filename
    6701398