Title :
Optimal Design of Magnitude Responses of Rational Infinite Impulse Response Filters
Author :
Ho, Charlotte Yuk-Fan ; Ling, Bingo Wing-Kuen ; Liu, Yan-Qun ; Tam, Peter Kwong-Shun ; Teo, Kok-Lay
Author_Institution :
Dept. of Electron. Eng., Queen Mary Univ. of London
Abstract :
This correspondence considers a design of magnitude responses of optimal rational infinite impulse response (IIR) filters. The design problem is formulated as an optimization problem in which a total weighted absolute error in the passband and stopband of the filters (the error function reflects a ripple square magnitude) is minimized subject to the specification on this weighted absolute error function defined in the corresponding passband and stopband, as well as the stability condition. Since the cost function is nonsmooth and nonconvex, while the constraints are continuous, this kind of optimization problem is a nonsmooth nonconvex continuous functional constrained problem. To address this issue, our previous proposed constraint transcription method is applied to transform the continuous functional constraints to equality constraints. Then the nonsmooth problem is approximated by a sequence of smooth problems and solved via a hybrid global optimization method. The solutions obtained from these smooth problems converge to the global optimal solution of the original optimization problem. Hence, small transition bandwidth filters can be obtained
Keywords :
IIR filters; band-pass filters; band-stop filters; optimisation; IIR filters; constraint transcription method; cost function; equality constraints; filter passband; filter stopband; hybrid global optimization method; magnitude responses; nonsmooth nonconvex continuous functional constrained problem; rational infinite impulse response filters; small transition bandwidth filters; total weighted absolute error function; Band pass filters; Cost function; Councils; Design optimization; Finite impulse response filter; IIR filters; Nonlinear filters; Optimization methods; Passband; Stability; Constraint transcription method; hybrid global optimization method; rational infinite-impulse-response (IIR) filters;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2006.880317