Title of article :
Optimal design of IIR digital filters with robust stability using conic-quadratic-programming updates
Author/Authors :
Wu-Sheng Lu، نويسنده , , Hinamoto، نويسنده , , T.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
In this paper, minimax design of infinite-impulse-response
(IIR) filters with prescribed stability margin is formulated
as a conic quadratic programming (CQP) problem. CQP is known
as a class of well-structured convex programming problems for
which efficient interior-point solvers are available. By considering
factorized denominators, the proposed formulation incorporates a
set of linear constraints that are sufficient and near necessary for
the IIR filter to have a prescribed stability margin. A second-order
cone condition on the magnitude of each update that ensures the
validity of a key linear approximation used in the design is also
included in the formulation and eliminates a line-search step. Collectively,
these features lead to improved designs relative to several
established methods. The paper then moves on to extend the
proposed design methodology to quadrantally symmetric two-dimensional
(2-D) digital filters. Simulation results for both one-dimensional
(1-D) and 2-D cases are presented to illustrate the new
design algorithms and demonstrate their performance in comparison
with several existing methods.
Keywords :
Conic quadratic programming , robust stability , IIR digital filters , 2-D IIR digital filters.
Journal title :
IEEE TRANSACTIONS ON SIGNAL PROCESSING
Journal title :
IEEE TRANSACTIONS ON SIGNAL PROCESSING