Journal Article10.1016/S0923-5965(01)00005-4
Forward error correction (FEC) codes based multiple description coding for internet video streaming and multicast
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TL;DR: This work describes the application of generalized multiple description (MD) source coding architected through the usage of forward error correction (FEC) codes to achieve robust and efficient Internet video streaming and multicast consistent with the existing Internet architecture.
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Abstract: In this work, we describe the application of generalized multiple description (MD) source coding architected through the usage of forward error correction (FEC) codes to achieve robust and efficient Internet video streaming and multicast consistent with the existing Internet architecture. We highlight the synergistic interaction between the robust source coding and packetization strategy and an efficient as well as responsive, TCP-friendly congestion control protocol linear increase multiplicative decrease with history (LIMD/H) to achieve robust streaming over the Internet. The proposed source packetization scheme transforms a loss sensitive layered video bitstream into a robust packet stream so as to provide graceful resilience to network packet drops. The proposed congestion control mechanism provides low variation in transmission rate in steady state and at the same time is reactive and provably TCP friendly. Furthermore, exploiting the fundamental property of a multicast tree, namely, the observation that the multicast tree is a degraded channel, we propose an elegant application level architecture for efficient video multicast. We exploit the amenability of the MD coding strategy to fast transcoding. Our extensive simulation studies for the streaming problem and preliminary results for the multicast case, bear out the efficacy of the proposed setup.
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Citations
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Forward error correction (FEC) codes based multiple description coding for internet video streaming and multicast
TL;DR: This work describes the application of generalized multiple description (MD) source coding architected through the usage of forward error correction (FEC) codes to achieve robust and efficient Internet video streaming and multicast consistent with the existing Internet architecture.
95
A Flexible Multiple Description Coding Framework for Adaptive Peer-to-Peer Video Streaming
TL;DR: Experimental results, by means of NS-2 network simulation of a P2P video streaming system, show that adaptation of the number, type of descriptions and the rate and redundancy level of each description according to network conditions yields significantly superior performance when compared to other scalable MDC schemes using a fixed number of descriptions/layers.
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References
Multiple description coding via polyphase transform and selective quantization
Wenqing Jiang,Antonio Ortega +1 more
- 28 Dec 1998
TL;DR: This paper first model such unreliable channels as erasure channels and then presents a MDC system using polyphase transform and selective quantization to recover channel erasures to achieve robust communication over unreliable channels such as a lossy packet network.
Graceful degradation over packet erasure channels through forward error correction
A.E. Mohr,Eve A. Riskin,Richard E. Ladner +2 more
- 29 Mar 1999
TL;DR: An algorithm that assigns unequal amounts of forward error correction to progressive data so as to provide graceful degradation as packet losses increase is presented, finding that for an exponential packet loss model, good image quality can be obtained, even when 40% of transmitted packets are lost.
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FEC and pseudo-ARQ for receiver-driven layered multicast of audio and video
Philip A. Chou,A.E. Mohr,Albert S. Wang,Sanjeev Mehrotra +3 more
- 28 Mar 2000
TL;DR: In this paper, the authors consider the problem of joint source/channel coding of real-time sources, such as audio and video, for the purpose of multicasting over the Internet.
Forward error correction (FEC) codes based multiple description coding for internet video streaming and multicast
TL;DR: This work describes the application of generalized multiple description (MD) source coding architected through the usage of forward error correction (FEC) codes to achieve robust and efficient Internet video streaming and multicast consistent with the existing Internet architecture.
95
FEC and pseudo-ARQ for receiver-driven layered multicast
S. Mehrotra,Philip A. Chou,A.E. Mohr,Albert S. Wang,Sanjeev Mehrotra +4 more
- 01 May 1999
TL;DR: This work considers the problem of joint source/channel coding of real-time sources, such as audio and video, for the purpose of multicasting over the Internet and augments this layered FEC system with layered ARQ, a pseudo-ARQ scheme that avoids an implosion of repeat requests at the sender, and is scalable to an unlimited number of receivers.
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