design of quadrature mirror filter bank using lagrange multiplier method based on fractional derivative constraints

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ID: 191238
2015
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Abstract
Fractional calculus has recently been identified as a very important mathematical tool in the field of signal processing. Digital filters designed by fractional derivatives give more accurate frequency response in the prescribed frequency region. Digital filters are most important part of multi-rate filter bank systems. In this paper, an improved method based on fractional derivative constraints is presented for the design of two-channel quadrature mirror filter (QMF) bank. The design problem is formulated as minimization of L2 error of filter bank transfer function in passband, stopband interval and at quadrature frequency, and then Lagrange multiplier method with fractional derivative constraints is applied to solve it. The proposed method is then successfully applied for the design of two-channel QMF bank with higher order filter taps. Performance of the QMF bank design is then examined through study of various parameters such as passband error, stopband error, transition band error, peak reconstruction error (PRE), stopband attenuation (As). It is found that, the good design can be obtained with the change of number and value of fractional derivative constraint coefficients.
Reference Key
kuldeep2015engineeringdesign Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;B. Kuldeep;A. Kumar;G.K. Singh
Journal International journal of molecular sciences
Year 2015
DOI
10.1016/j.jestch.2014.12.005
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