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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Frame level multimedia decoding with frame information table
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Multiple Description Coding for H.264/AVC With Redundancy Allocation at Macro Block Level
TL;DR: A novel multiple description video coding scheme is proposed to insert and control the redundancy at macro block (MB) level by analyzing the error propagation paths, thus generating descriptions that are compatible with the baseline profile and extended profile of H.264/AVC.
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Embedded Multiple Description Coding of Video
TL;DR: A novel design for scalable erasure-resilient video coding is proposed that couples the compression efficiency of the open-loop architecture with the robustness provided by multiple description coding and scalability and packet-erasure resilience are jointly provided via embedded multiple description scalar quantization.
41
Path diversity over packet switched networks: performance analysis and rate allocation
TL;DR: Forward error correction (FEC) is applied across multiple independent paths to enhance the end-to-end reliability and it is proved that the probability of irrecoverable loss (PE) decays exponentially with the number of paths.
Distortion-Driven Video Streaming over Multihop Wireless Networks with Path Diversity
TL;DR: This paper addresses the problem of robust video streaming in multihop networks by relying on delay- constrained and distortion-aware scheduling, path diversity, and retransmission of important video packets over multiple links to maximize the received video quality at the destination node.
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