Title :
Hybrid Signal-and-Link-Parametric Speech Quality Measurement for VoIP Communications
Author :
Falk, Tiago H. ; Chan, Wai-Yip
Author_Institution :
Dept. of Electr. & Comput. Eng., Queen´´s Univ., Kingston, ON
Abstract :
A hybrid signal-and-link-parametric approach to speech quality measurement for voice-over-Internet protocol (VoIP) communications is described. Connection parameters are used to determine a base quality representative of the transmission link. Degradation factors, computed from perceptual features extracted from the decoded speech signal, are used to quantify distortions not captured by the connection parameters. The algorithm is tested on speech degraded by acoustic noise, temporal clippings, and noise suppression artifacts, thus simulating degradations present in wireless-VoIP tandem connections. Hybrid measurement is shown to overcome the limitations of pure link parametric and pure signal-based measurement methods, resulting in better measurement accuracy for modern VoIP communications. In addition, the proposed algorithm incurs modest computational overhead relative to pure link parametric measurement and attains up to 88% reduction in processing time relative to the ITU-T standard P.563 signal-based algorithm.
Keywords :
Internet telephony; decoding; feature extraction; interference suppression; radiocommunication; speech coding; ITU-T standard P.563 signal-based algorithm; VoIP communications; acoustic noise; computational overhead; connection parameters; decoded speech signal; degradation factors; hybrid signal-and-link-parametric approach; noise suppression artifacts; perceptual features extraction; speech quality measurement; temporal clippings; transmission link; voice-over-Internet protocol; wireless-VoIP tandem connections; Acoustic distortion; Acoustic measurements; Acoustic noise; Acoustic testing; Decoding; Degradation; Distortion measurement; Feature extraction; Internet telephony; Speech; Live call monitoring; quality impairments; speech distortions; speech quality measurement; voice-over-Internet protocol (VoIP);
Journal_Title :
Audio, Speech, and Language Processing, IEEE Transactions on
DOI :
10.1109/TASL.2008.2004524