Title :
Linear matrix inequality formulation of spectral mask constraints with applications to FIR filter design
Author :
Davidson, Timothy N. ; Luo, Zhi-Quan ; Sturm, Jos F.
Author_Institution :
Dept. of Electr. & Comput. Eng., McMaster Univ., Hamilton, Ont., Canada
fDate :
11/1/2002 12:00:00 AM
Abstract :
The design of a finite impulse response (FIR) filter often involves a spectral "mask" that the magnitude spectrum must satisfy. The mask specifies upper and lower bounds at each frequency and, hence, yields an infinite number of constraints. In current practice, spectral masks are often approximated by discretization, but in this paper, we derive a result that allows us to precisely enforce piecewise constant and piecewise trigonometric polynomial masks in a finite and convex manner via linear matrix inequalities. While this result is theoretically satisfying in that it allows us to avoid the heuristic approximations involved in discretization techniques, it is also of practical interest because it generates competitive design algorithms (based on interior point methods) for a diverse class of FIR filtering and narrowband beamforming problems. The examples we provide include the design of standard linear and nonlinear phase FIR filters, robust "chip" waveforms for wireless communications, and narrowband beamformers for linear antenna arrays. Our main result also provides a contribution to system theory, as it is an extension of the well-known positive-real and bounded-real lemmas.
Keywords :
FIR filters; array signal processing; digital filters; linear antenna arrays; linear phase filters; network synthesis; nonlinear filters; piecewise constant techniques; piecewise polynomial techniques; polynomials; radiofrequency filters; spectral analysis; FIR filter design; bounded-real lemmas; finite impulse response filter; heuristic approximations; interior point methods; linear antenna arrays; linear matrix inequalities; linear phase FIR filters; lower bounds; magnitude spectrum; narrowband beamformers; narrowband beamforming; nonlinear phase FIR filters; piecewise constant polynomial masks; piecewise trigonometric polynomial masks; positive-real lemmas; robust chip waveforms; spectral mask constraints; system theory; upper bounds; wireless communications; Algorithm design and analysis; Array signal processing; Filtering algorithms; Finite impulse response filter; Frequency; Linear antenna arrays; Linear matrix inequalities; Narrowband; Phased arrays; Polynomials;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2002.804079