Title :
Excitation-dependent stepsize control of adaptive volterra filters for acoustic echo cancellation
Author :
Contan, Cristian ; Zeller, Marcus ; Kellermann, Walter ; Topa, Marina
Author_Institution :
Bases of Electron. Dept., Tech. Univ. of Cluj-Napoca, Cluj-Napoca, Romania
Abstract :
This paper proposes a new updating technique for adaptive Volterra kernels employed as nonlinear models for the identification of unknown feedback paths in acoustic nonlinear echo cancellation tasks. Considering that nonlinear distortions are mainly introduced for high input levels, the effective step size is shaped according to the instantaneous envelope of the excitation signal. The loudspeaker-enclosure-microphone setup is modeled using measured linear and quadratic Volterra kernels. The efficiency of the proposed method is compared to the one of the second-order Volterra filter that uses only the Normalized Least-Mean-Square algorithm for kernel adaptation in terms of Echo Return Loss Enhancement. Simulations for different input signals show a superior behavior of the new approach in terms of convergence speed, considering the same steady-state error.
Keywords :
acoustic signal processing; adaptive filters; echo suppression; least mean squares methods; loudspeakers; microphones; nonlinear filters; acoustic nonlinear echo cancellation tasks; adaptive Volterra filters; adaptive Volterra kernels; convergence speed; echo return loss enhancement; excitation-dependent stepsize control; input signals; linear Volterra kernels; loudspeaker-enclosure-microphone setup; nonlinear distortions; nonlinear models; normalized least-mean-square algorithm; quadratic Volterra kernels; second-order Volterra filter; unknown feedback path identification; Adaptive filters; Convergence; Echo cancellers; Kernel; Maximum likelihood detection; Nonlinear filters; Volterra filters; acoustic echo cancellation; adaptive algorithms; nonlinear distortions;
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2012 Proceedings of the 20th European
Print_ISBN :
978-1-4673-1068-0