Symmetry Development for Implementing Odd-Order Lagrange-Type Variable Fractional-Delay Filters
Tian–Bo Deng · 2006
The authors' previous work has derived an explicit formula for computing the coefficients of arbitrary-order Lagrange-type variable fractional-delay (VFD) digital filter in a closed-form. This paper develops new coefficient symmetry for efficiently implementing odd-order Lagrange-type VFD filters such that an odd-order Lagrange-type VFD filter can be implemented as the Farrow structure and more efficient even-odd structure whose all subfilters have either symmetric or anti-symmetric coefficients. This symmetry exploitation not only saves the storage for VFD filter coefficients and but also reduces the number of multiplications required in VFD filtering by 50%, which speeds up the VFD filtering process