(Enter summary)
Abstract: The single class best effort service available in the current Internet
does not provide the guarantees, typically expressed in terms
of minimum bandwidth and/or maximum delay or loss, associated
with real-time applications such as live video. One way to
support such applications in best effort networks is to use control
mechanisms that adapt the coding, transmission, reception,
and decoding processes at the source and at the destination(s)
depending on the state of the network. In this paper,... (Update)
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BibTeX entry: (Update)
J.-C. Bolot and T. Turletti. Experience with control mechanisms for packet video in the internet. In SIGCOMM Computer Communication Review, vol.28, No 1, January 1998. http://citeseer.ist.psu.edu/article/bolot98experience.html More
@article{ bolot98experience,
author = "J-C. Bolot and T. Turletti",
title = "Experience with Control Mechanisms for Packet Video in the Internet",
journal = "Computer Communication Review",
year = "1998",
url = "citeseer.ist.psu.edu/article/bolot98experience.html" }
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1023
RTP: A transport protocol for real-time applications
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250
TCP-like congestion control for layered multicast data trans..
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Scalable feedback control for multicast video distribution i..
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Packet loss correlation in the MBone multicast network
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An adaptive congestion control scheme for real-time packet v.. (context) - Kanakia, Mishra et al. - 1993
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Receiver-driven layered multicast
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An application-level video gateway
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TCP-friendly unicast rate-based flow control (context) - Mahdavi, Floyd - 1997
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Reliable audio for use over the Internet
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Dynamic QoS control of multimedia applications based on RTP
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Packet recovery in high-speed networks using coding and buff.. (context) - Shacham, McKenney - 1990
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The case for FEC-based error control for packet audio in the..
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89
Control mechanisms for packet audio in the Internet
- Bolot, Garcia - 1996
82
Experiments with a layered transmission scheme over the Inte..
- Turletti, Parisis - 1997
47
Experiences with real-time software video compression
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41
Performance analysis of windowbased flow control using TCP/I.. (context) - Lakshman, Madhow - 1994
38
Thin streams: an architecture for multicasting layered video (context) - Wu, Sharma et al. - 1997
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Filter propagation in dissemination trees: Trading off bandw..
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32
Coding and cell loss recovery in DCT-based packet video (context) - Zhu - 1993
31
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29
Rate control for video coding over variable bit rate channel..
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Low complexity video coding for receiver driven layered mult..
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22
End to end quality of service control using adaptive applica..
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22
Adaptive, best-effort delivery of digital audio and video ac..
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21
Remote seminars through multimedia conferencing: Experiences..
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18
Packetized video - Options for interaction between the user,.. (context) - Wakeman - 1993
11
Statistically based buffer control policies for constant rat.. (context) - Zdepsky - 1991
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Analysis of the increase/decrease algorithms for congestion .. (context) - Chiu, Jain - 1989
9
Buffer and channel sharing by several interframe picturephon.. (context) - Haskell - 1972
8
A rate control for packet video in the Internet (context) - Bolot, Turletti
5
Adaptive channel error protection of subband encoded images (context) - Westerink - 1993
4
Multilayer subband-based video coding (context) - Gharavi - 1991
3
IVS Videoconferencing in the Internet (context) - Turletti, Huitema - 1996
3
Payload Format Issues for Redundant Encodings in RTP (context) - Perkins - 1996
2
DirectShow support for adaptivity in networked multimedia ap.. (context) - Cline - 1997
1
Layered error-control coding for layered multicast (context) - Karlsson - 1997
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