Title :
Weighted least squares IIR filter design with arbitrary magnitude and phase responses and specified stability margin
Author :
Lang, Mathias C.
Author_Institution :
Inst. fur Nachrichtentech und Hochfrequenztech., Vienna Univ. of Technol., Austria
Abstract :
This paper presents a new approach to the frequency domain design of infinite impulse response (IIR) digital filters with arbitrary magnitude and phase responses and a constraint on the maximum pole radius. The proposed method uses the polynomial coefficients of the filter´s transfer function as design parameters which provides better solutions in most cases than other parameterizations of the transfer function. An arbitrarily specified constraint on the pole radii can be satisfied using the implications of Rouche´s theorem. Using these results we modify a standard method for the solution of nonlinear least squares problems to incorporate this maximum pole radius constraint which we consider to be important for implementing the filter with finite wordlength. A design example demonstrates the superiority of the proposed method over two other methods considering the same design problem
Keywords :
IIR filters; circuit stability; digital filters; frequency-domain synthesis; least squares approximations; poles and zeros; polynomials; transfer functions; IIR digital filters; Rouche´s theorem; arbitrary magnitude response; arbitrary phase response; finite wordlength; frequency domain design; infinite impulse response; maximum pole radius constraint; nonlinear least squares problems; polynomial coefficients; specified stability margin; transfer function; weighted least squares IIR filter design; Band pass filters; Chebyshev approximation; Delay; Digital filters; Finite impulse response filter; Frequency domain analysis; IIR filters; Least squares approximation; Least squares methods; Transfer functions;
Conference_Titel :
Advances in Digital Filtering and Signal Processing, 1998 IEEE Symposium on
Conference_Location :
Victoria, BC
Print_ISBN :
0-7803-4957-1
DOI :
10.1109/ADFSP.1998.685700