Title :
Computing the Minimum-Phase Filter Using the QL-Factorization
Author :
Hansen, Morten ; Christensen, Lars P B ; Winther, Ole
Author_Institution :
DTU Inf., Tech. Univ. of Denmark, Lyngby, Denmark
fDate :
6/1/2010 12:00:00 AM
Abstract :
We investigate the QL-factorization of a time-invariant convolutive filtering matrix and show that this factorization not only provides the finite length equivalent to the minimum-phase filter, but also gives the associated all-pass filter. The convergence properties are analyzed and we derive the exact convergence rate and an upper bound for a simple single-input single-output system with filter length . Finally, this upper bound is used to derive an approximation of the convergence rate for systems of arbitrary length. Implementation-wise, the method has the advantage of being numerically stable and straight forward to extend to the multiple-input multiple-output case. Furthermore, due to the existence of fast QL-factorization methods, it is possible to compute the filters efficiently.
Keywords :
all-pass filters; approximation theory; convergence of numerical methods; filtering theory; matrix decomposition; QL-factorization methods; all-pass filter; arbitrary length; exact convergence rate; minimum-phase filter; single-input single-output system; time-invariant convolutive filtering matrix; Minimum-phase filtering; QL-factorization; spectral factorization; sphere detection; wireless communications;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2010.2045795