This paper proposes a new acoustic echo cancellation (AEC) system which combines a conventional AEC al-gorithm with the pitch analysis technique. Departing from the use of pitch prediction in speech coding, we use two signals, i.e. the estimated echo and the residual echo, to fulfill the pitch extraction in the AEC system. This system is suitable for the applications of digital networks where the nonlinearities of the echo path sig-nificantly degrade the performance of conventional AEC algorithms. Simulation results using a nonlinear channel show that, compared to conventional AEC algorithms, the proposed system remarkably suppresses the acoustic echo during double-talk.
Abstract — This paper describes the design and implementation of a sub-band based acoustic echo canc...
This paper presents a novel acoustic echo canceller (AEC) consisting of an adaptive FIR filter and a...
We explore interesting connections between blind source sep-aration (BSS) and acoustic echo cancella...
Acoustic echo cancellation (AEC) is an essential component of effective hands-free telephony. Conve...
Acoustic echo cancelation (AEC) composes a fundamental property of speech processing to enable a ple...
Acoustic echo cancelation (AEC) composes a fundamental property of speech processing to enable a ple...
Acoustic echo cancelation (AEC) composes a fundamental property of speech processing to enable a ple...
In this paper a novel approach to single microphone Acoustic Echo cancellation (AEC) is presented. T...
In this paper a novel approach to single microphone Acoustic Echo cancellation (AEC) is presented. T...
In this paper a novel approach to single microphone Acoustic Echo cancellation (AEC) is presented. T...
In this paper, a nonlinear acoustic echo cancellation (AEC) system is proposed, whereby 3rd order Vo...
In this paper, a nonlinear acoustic echo cancellation (AEC) system is proposed, whereby 3rd order Vo...
This paper presents a novel acoustic echo canceller (AEC) consisting of an adaptive FIR filter and a...
It is well known that an over-driven loudspeaker would produce a nonlinearity that limits the perfor...
Includes bibliographical references (pages [196]-204)Acoustic echoes existing in teleconferencing, v...
Abstract — This paper describes the design and implementation of a sub-band based acoustic echo canc...
This paper presents a novel acoustic echo canceller (AEC) consisting of an adaptive FIR filter and a...
We explore interesting connections between blind source sep-aration (BSS) and acoustic echo cancella...
Acoustic echo cancellation (AEC) is an essential component of effective hands-free telephony. Conve...
Acoustic echo cancelation (AEC) composes a fundamental property of speech processing to enable a ple...
Acoustic echo cancelation (AEC) composes a fundamental property of speech processing to enable a ple...
Acoustic echo cancelation (AEC) composes a fundamental property of speech processing to enable a ple...
In this paper a novel approach to single microphone Acoustic Echo cancellation (AEC) is presented. T...
In this paper a novel approach to single microphone Acoustic Echo cancellation (AEC) is presented. T...
In this paper a novel approach to single microphone Acoustic Echo cancellation (AEC) is presented. T...
In this paper, a nonlinear acoustic echo cancellation (AEC) system is proposed, whereby 3rd order Vo...
In this paper, a nonlinear acoustic echo cancellation (AEC) system is proposed, whereby 3rd order Vo...
This paper presents a novel acoustic echo canceller (AEC) consisting of an adaptive FIR filter and a...
It is well known that an over-driven loudspeaker would produce a nonlinearity that limits the perfor...
Includes bibliographical references (pages [196]-204)Acoustic echoes existing in teleconferencing, v...
Abstract — This paper describes the design and implementation of a sub-band based acoustic echo canc...
This paper presents a novel acoustic echo canceller (AEC) consisting of an adaptive FIR filter and a...
We explore interesting connections between blind source sep-aration (BSS) and acoustic echo cancella...