DocumentCode :
177894
Title :
State-space architecture of the partitioned-block-based acoustic echo controller
Author :
Kuech, Fabian ; Mabande, Edwin ; Enzner, Gerald
Author_Institution :
Fraunhofer IIS, Erlangen, Germany
fYear :
2014
fDate :
4-9 May 2014
Firstpage :
1295
Lastpage :
1299
Abstract :
Acoustic echo cancellation has traditionally employed basically all variants known from deterministic adaptive filter design, such as least mean-square (LMS), recursive least-squares (RLS), and frequency-domain adaptive filters (FDAF). More recently, a stochastic adaptive filter design based on the concept of acoustic state-space modeling of the echo path has been introduced to accommodate for an ever sought unification of adaptive filtering and adaptation control. The corresponding Kalman filter theory has been formulated for single-channel, multi-channel, and nonlinear echo cancellation problems. This paper closes an important gap by formulating the state-space model and the corresponding adaptive algorithm for the partitioned-block filtering structure which is especially relevant in practice. This structure allows for the use of significantly longer filter lengths in comparison to previous work, and for the flexible design and implementation of acoustic echo cancellers for widely differing acoustic conditions.
Keywords :
Kalman filters; acoustic filters; adaptive filters; echo; echo suppression; least mean squares methods; recursive filters; stochastic processes; FDAF; Kalman filter theory; LMS; RLS; acoustic echo cancellation; acoustic echo controller; adaptation control; echo path; frequency-domain adaptive filters; least mean square filter; partitioned block filtering structure; recursive least squares filter; stochastic adaptive filter design; Echo cancellers; Frequency-domain analysis; Kalman filters; Microphones; Speech; acoustic echo control; adaptive filtering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2014 IEEE International Conference on
Conference_Location :
Florence
Type :
conf
DOI :
10.1109/ICASSP.2014.6853806
Filename :
6853806
Link To Document :
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