Victor's picture Víctor Ramos
Research associate
UAM-Iztapalapa
México

Victor.Ramos@ieee.org

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VoIP bibliography

Playout delay

[1]
Prathima Agrawal, Jyh-Cheng Chen, and Cormac J. Sreenan. Use of statistical methods to reduce delays for media playback buffering. In International Conference on Multimedia Computing and Systems, pages 259-263, 1998.
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[2]
Nikolaus Farber, Yi Liang, Bernd Girod, and Balaji Prabhakar. Adaptive playout and TCP window control for voice over IP in best-effort networks. Technical report, Stanford University, Information Systems Laboratory, Department of Electrical Engineering, March 2001.
[ bib | .pdf ]

[3]
Kouhei Fujimoto. Adaptive playout buffer algorithm for enhancing perceived quality of streaming applications. Master's thesis, Osaka University, February 2002.
[ bib | .pdf ]

[4]
Kouhei Fujimoto, Shingo Ata, and Masayuki Murata. Playout control for streaming applications by statistical delay analysis. In Proceedings of IEEE International Conference on Communications, volume 8, pages 2337-2342, June 2001.
[ bib | .pdf ]

[5]
Kouhei Fujimoto, Shingo Ata, and Masayuki Murata. Statistical analysis of packet delays in the internet and its application to playout control for streaming applications. IEICE Transactions on Communications, E84-B:1504-1512, June 2001.
[ bib | .pdf ]

[6]
Kouhei Fujimoto, Shingo Ata, and Masayuki Murata. Adaptive playout buffer algorithm for enhancing perceived quality of streaming applications. In Submitted to IEEE Globecom, 2002.
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[7]
Aman Kansar and Abhay Karandikar. Jitter-free audio playout over best effort packet networks. In ATM Forum International Symposium, New Delhi, India, 2001.
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[8]
P. De Leon and C. Sreenan. An adaptive predictor for media playout buffering. In Proc. of IEEE International Conference on Acoustics, Speech, and Signal Processing (ICASSP), pages 3097-3100, March 1999.
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[9]
Yi J. Liang, Nikolaus Farber, and Bernd Girod. Adaptive playout scheduling and loss concealment for voice communications over IP networks. IEEE Transactions on Multimedia, April 2001.
[ bib | .pdf ]

[10]
Yi J. Liang, Nikolaus Farber, and Bernd Girod. Adaptive playout scheduling using time-scale modification in packet voice communications. In Proceedings of the International Conference on Acoustics Speech and Signal Processing ICASSP, volume 3, pages 1445-1448, May 2001.
[ bib | .pdf ]

[11]
Wen-Tsai Liao, Jeng-Chun Chen, and Ming-Syan Chen. Adaptive recovery techniques for real-time audio streams. In Proceedings of the IEEE Infocom 2001, Anchorage, Alaska, USA, April 2001.
[ bib | .pdf ]

[12]
Fang Liu, Jong Won Kim, and C.C. Jay Kuo. Adaptive delay concealment for internet voice applications with packet-based time-scale modification. In Proceedings of the International Conference on Acoustics Speech and Signal Processing ICASSP, Salt Lake City, May 2001.
[ bib | .pdf ]

[13]
Sue B. Moon, Jim Kurose, and Don Towsley. Packet audio playout delay adjustment: Performance bounds and algorithms. ACM/Springer Multimedia Systems, 6:17-28, January 1998.
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[14]
Jesús Pinto and Kenneth J. Christensen. An algorithm for playout of packet voice based on adaptive adjustment of talkspurt silence periods. In Proceedings of the IEEE Conference on Local Computer Networks, pages 224-231, October 1999.
[ bib | .pdf ]

[15]
Ramachandran Ramjee, Jim Kurose, Don Towsley, and Henning Schulzrinne. Adaptive playout mechanisms for packetized audio applications in wide-area networks. In Proceedings of the IEEE Infocom, pages 680-688, 1994.
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[16]
Jonathan Rosenberg and Henning Schulzrinne. Integrating packet FEC into adaptive voice playout buffer algorithms on the internet. In Proceedings of the IEEE Infocom, pages 1705-1714, March 2001.
[ bib | .ps ]

[17]
Cormac J. Sreenan, Jyh-Cheng Chen, Prathima Agrawal, and B. Narendran. Delay reduction techniques for playout buffering. IEEE Transactions on Multimedia, 2(2):88-100, June 2000.
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[18]
A. Stenger, K. Younes, R. Reng, and B. Girod. A new error concealment technique for audio transmission with packet loss. In EUSIPCO, 1996.
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[19]
Werner Verhelst and Marc Roelands. An overlap-add technique based on waveform similarity (WSOLA) for high quality time-scale modification of speech. In Proceedings of the International Conference on Acoustics, Speech and Signal Processing, pages 554-557, Minneapolis, USA, April 1993.
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[20]
Ondria J. Wasem, David J. Goodman, Charles A. Dvorak, and Howard G. Page. The effect of waveform substitution on the quality of PCM packet communications. IEEE Transactions on Acoustics, Speech and Signal Processing, 36(3):342-348, March 1988.
[ bib ]