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dc.contributor.authorHalbach, Tillnb_NO
dc.date.accessioned2014-12-19T13:29:21Z
dc.date.available2014-12-19T13:29:21Z
dc.date.created2004-06-14nb_NO
dc.date.issued2004nb_NO
dc.identifier122065nb_NO
dc.identifier.isbn82-471-6382-9nb_NO
dc.identifier.urihttp://hdl.handle.net/11250/249685
dc.description.abstractThis dissertation considers packet-switched wireless networks for transmission of variable-rate layered hybrid video streams. Target applications are video streaming and broadcasting services. The work can be divided into two main parts. In the first part, a novel quality-scalable scheme based on coefficient refinement and encoder quality constraints is developed as a possible extension to the video coding standard H.264. After a technical introduction to the coding tools of H.264 with the main focus on error resilience features, various quality scalability schemes in previous research are reviewed. Based on this discussion, an encoder decoder framework is designed for an arbitrary number of quality layers, hereby also enabling region-of-interest coding. After that, the performance of the new system is exhaustively tested, showing that the bit rate increase typically encountered with scalable hybrid coding schemes is, for certain coding parameters, only small to moderate. The double- and triple-layer constellations of the framework are shown to perform superior to other systems. The second part considers layered code streams as generated by the scheme of the first part. Various error propagation issues in hybrid streams are discussed, which leads to the definition of a decoder quality constraint and a segmentation of the code stream to transmit. A packetization scheme based on successive source rate consumption is drafted, followed by the formulation of the channel code rate optimization problem for an optimum assignment of available codes to the channel packets. Proper MSE-based error metrics are derived, incorporating the properties of the source signal, a terminate-on-error decoding strategy, error concealment, inter-packet dependencies, and the channel conditions. The Viterbi algorithm is presented as a low-complexity solution to the optimization problem, showing a great adaptivity of the joint source channel coding scheme to the channel conditions. An almost constant image qualiity is achieved, also in mismatch situations, while the overall channel code rate decreases only as little as necessary as the channel quality deteriorates. It is further shown that the variance of code distributions is only small, and that the codes are assigned irregularly to all channel packets. A double-layer constellation of the framework clearly outperforms other schemes with a substantial margin. Keywords — Digital lossy video compression, visual communication, variable bit rate (VBR), SNR scalability, layered image processing, quality layer, hybrid code stream, predictive coding, progressive bit stream, joint source channel coding, fidelity constraint, channel error robustness, resilience, concealment, packet-switched, mobile and wireless ATM, noisy transmission, packet loss, binary symmetric channel, streaming, broadcasting, satellite and radio links, H.264, MPEG-4 AVC, Viterbi, trellis, unequal error protectionnb_NO
dc.languageengnb_NO
dc.publisherFakultet for informasjonsteknologi, matematikk og elektroteknikknb_NO
dc.relation.ispartofseriesDoktoravhandlinger ved NTNU, 1503-8181; 2004:84nb_NO
dc.subjectDigital lossy video compressionen_GB
dc.subjectvisual communicationen_GB
dc.subjectvariable bit rate (VBR)en_GB
dc.subjectSNR scalabilityen_GB
dc.subjectlayered image processingen_GB
dc.subjectquality layeren_GB
dc.subjecthybrid code streamen_GB
dc.subjectpredictive codingen_GB
dc.subjectprogressive bit streamen_GB
dc.subjectjoint source channel codingen_GB
dc.subjectfidelity constrainten_GB
dc.subjectchannel error robustnessen_GB
dc.subjectresilienceen_GB
dc.subjectconcealmenten_GB
dc.subjectpacket-switcheden_GB
dc.subjectmobile and wireless ATMen_GB
dc.subjectnoisy transmissionen_GB
dc.subjectpacket lossen_GB
dc.subjectbinary symmetric channelen_GB
dc.subjectstreamingen_GB
dc.subjectbroadcastingen_GB
dc.subjectsatellite and radio linksen_GB
dc.subjectH.264en_GB
dc.subjectMPEG-4 AVCen_GB
dc.subjectViterbien_GB
dc.subjecttrellisen_GB
dc.subjectunequal error protectionren_GB
dc.titleError-robust coding and transformation of compressed hybered hybrid video streams for packet-switched wireless networksnb_NO
dc.typeDoctoral thesisnb_NO
dc.source.pagenumber175nb_NO
dc.contributor.departmentNorges teknisk-naturvitenskapelige universitet, Fakultet for informasjonsteknologi, matematikk og elektroteknikknb_NO
dc.description.degreedr.ing.nb_NO
dc.description.degreedr.ing.en_GB


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