Title :
Fast converging adaptive IIR LMS filter in direct form using the suboptimal step-size
Author_Institution :
Ascom Tech. Ltd., Bern, Switzerland
Abstract :
The concept of adaptive noise cancelling is investigated by employing an adaptive IIR (infinite impulse response) digital filter in direct form with a simplified coefficient-updating algorithm. One of the drawbacks of this adaptive IIR LMS (least mean square) filter in direct form was the difficulty in choosing the step-size for fast coefficient updating. Initially, the optimal step-size is derived by using the output-equation-error technique. Simulations show that the adaptive IIR filter in direct form with the suboptimal step-size outperforms the output-equation-error technique. In connection with the problem of stability of the adaptive IIR filter considered, it is shown that with the suboptimal step-size the coefficient updating algorithm is very robust. In particular, a commonly used stability test prior to new coefficient adjustment is basically no longer required
Keywords :
adaptive filters; convergence; digital filters; filtering and prediction theory; interference suppression; least squares approximations; stability; adaptive IIR LMS filter; adaptive noise cancelling; coefficient-updating algorithm; digital filter; direct form; infinite impulse response; least mean square; output-equation-error technique; stability; suboptimal step-size; Adaptive filters; Additive noise; Digital filters; Equations; IIR filters; Least squares approximation; Lyapunov method; Noise cancellation; Robust stability; Speech enhancement;
Conference_Titel :
Circuits and Systems, 1991., IEEE International Sympoisum on
Print_ISBN :
0-7803-0050-5
DOI :
10.1109/ISCAS.1991.176370