Mobile Video Transmission Using Scalable Video Coding
The scalable video coding (SVC) standard as an extension of H.264/AVC allows efficient, standard-based temporal, spatial, and quality scalability of video bit streams. Scalability of a video bit stream allows for media bit rate as well as for device capability adaptation. Moreover, adaptation of the...
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Veröffentlicht in: | IEEE transactions on circuits and systems for video technology 2007-09, Vol.17 (9), p.1204-1217 |
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creator | Schierl, T. Stockhammer, T. Wiegand, T. |
description | The scalable video coding (SVC) standard as an extension of H.264/AVC allows efficient, standard-based temporal, spatial, and quality scalability of video bit streams. Scalability of a video bit stream allows for media bit rate as well as for device capability adaptation. Moreover, adaptation of the bit rate of a video signal is a desirable key feature, if limitation in network resources, mostly characterized by throughput variations, varying delay or transmission errors, need to be considered. Typically, in mobile networks the throughput, delay and errors of a connection (link) depend on the current reception conditions, which are largely influenced by a number of physical factors. In order to cope with the typically varying characteristics of mobile communication channels in unicast, multicast, or broadcast services, different methods for increasing robustness and achieving quality of service are desirable. We will give an overview of SVC and its relation to mobile delivery methods. Furthermore, innovative use cases are introduced which apply SVC in mobile networks. |
doi_str_mv | 10.1109/TCSVT.2007.905528 |
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Scalability of a video bit stream allows for media bit rate as well as for device capability adaptation. Moreover, adaptation of the bit rate of a video signal is a desirable key feature, if limitation in network resources, mostly characterized by throughput variations, varying delay or transmission errors, need to be considered. Typically, in mobile networks the throughput, delay and errors of a connection (link) depend on the current reception conditions, which are largely influenced by a number of physical factors. In order to cope with the typically varying characteristics of mobile communication channels in unicast, multicast, or broadcast services, different methods for increasing robustness and achieving quality of service are desirable. We will give an overview of SVC and its relation to mobile delivery methods. Furthermore, innovative use cases are introduced which apply SVC in mobile networks.</description><subject>3 GPP</subject><subject>Adaptation</subject><subject>Automatic voltage control</subject><subject>Bit rate</subject><subject>Broadcasting</subject><subject>Channels</subject><subject>Coding</subject><subject>Content delivery</subject><subject>Delay</subject><subject>Devices</subject><subject>DVB-H</subject><subject>H.264/AVC</subject><subject>mobile</subject><subject>Mobile communication</subject><subject>Multicast</subject><subject>Networks</subject><subject>protocols</subject><subject>raptor codes</subject><subject>Scalability</subject><subject>Static VAr compensators</subject><subject>Streaming media</subject><subject>Streams</subject><subject>Throughput</subject><subject>Unicast</subject><subject>video</subject><subject>Video coding</subject><subject>wireless</subject><issn>1051-8215</issn><issn>1558-2205</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNp9kE1PwzAMhiMEEqPwAxCXigOcOuIkXtIjqviShjis2zVK2gR16prRsAP_no6iHTggW7JlPa9lv4RcAp0C0PyuLBarcsooldOcIjJ1RCaAqDLGKB4PPUXIFAM8JWcxrikFoYScEHwNtmldumpqF9KyN13cNDE2oUuXsene00VlWmMPRBHqYXpOTrxpo7v4rQlZPj6UxXM2f3t6Ke7nWcURPzOTS--5qgWbKfSmcl54620NOaNWVLSWClkuLVhj0HMjrUKH4AwqlJYrnpDbce-2Dx87Fz_1cFzl2tZ0LuyiVirnUu4zITf_klwg5WKIhFz_Addh13fDFzoHxmDGGRsgGKGqDzH2zutt32xM_6WB6r3f-sdvvfdbj34PmqtR0zjnDrzgIGcc-TfpGXrH</recordid><startdate>20070901</startdate><enddate>20070901</enddate><creator>Schierl, T.</creator><creator>Stockhammer, T.</creator><creator>Wiegand, T.</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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Scalability of a video bit stream allows for media bit rate as well as for device capability adaptation. Moreover, adaptation of the bit rate of a video signal is a desirable key feature, if limitation in network resources, mostly characterized by throughput variations, varying delay or transmission errors, need to be considered. Typically, in mobile networks the throughput, delay and errors of a connection (link) depend on the current reception conditions, which are largely influenced by a number of physical factors. In order to cope with the typically varying characteristics of mobile communication channels in unicast, multicast, or broadcast services, different methods for increasing robustness and achieving quality of service are desirable. We will give an overview of SVC and its relation to mobile delivery methods. 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subjects | 3 GPP Adaptation Automatic voltage control Bit rate Broadcasting Channels Coding Content delivery Delay Devices DVB-H H.264/AVC mobile Mobile communication Multicast Networks protocols raptor codes Scalability Static VAr compensators Streaming media Streams Throughput Unicast video Video coding wireless |
title | Mobile Video Transmission Using Scalable Video Coding |
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