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Recent years have brought increased popularity of streaming video technology based on the HTTP protocol. The growing number of recipient of such services is the cause of the increased importance of the following issues: the choice of the proper gradation of encoding parameters inside redundant representation of video content and the impact of competition for network resources among individual streams on QoE metrics. The paper presents the method of selection of the SVC stream structure to optimize the grading changes of video parameters in DASH services and thereby reduce the influence of the adaptation process on the quality of received multimedia content.
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Czasopismo
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Tom
Strony
15--24
Opis fizyczny
Bibliogr. 16 poz., rys.
Twórcy
autor
- Lodz Univesity of Technology
autor
- Technical University of Lublin
Bibliografia
- [1] Akhshabi, S., Anantakrishnan, L., Begen, A.C., Dovrolis, C. (2012). What happens when HTTP adaptive streaming players compete for bandwidth? In Proceedings of the 22nd international workshop on Network and Operating System Support for Digital Audio and Video (pp. 9-14). ACM
- [2] Akhshabi, S., Begen, A. C., Dovrolis, C. (2011). An experimental evaluation of rate-adaptation algorithms in adaptive streaming over HTTP. In Proceedings of the second annual ACM conference on Multimedia systems (pp. 157-168).
- [3] Blake, S., Black, D., Carlson, M., Davies, E., Wang, Z., Weiss, W. (1998). An architecture for differentiated services, IETF RFC247
- [4] Daronco, L. C., Roesler, V., de Lima, J. V. (2010, March). Subjective video quality assessment applied to scalable video coding and transmission instability. In Proceedings of the 2010 ACM Symposium on Applied Computing (pp. 1898-1904).
- [5] Gupta, R., Pulipaka, A., Seeling, P., Karam, L. J., Reisslein, M. (2012). H. 264 coarse grain scalable (CGS) and medium grain scalable (MGS) encoded video: a trace based traffic and quality evaluation. Broadcasting, IEEE Transactions on, 58(3), 428-439
- [6] Grafl, M., Timmerer, C., Hellwagner, H., Cherif, W., Negru, D., Battista, S. Combined bitrate suggestions for multi-rate streaming of industry solutions.http://alicante.itec.aau.at/am1.html
- [7] ISO/IEC 14496-10:2012. (2002). Coding of audio-visual objects-Part 10: Advanced video coding. http://standards.iso.org/ittf/PubliclyAvailableStandards/c061490_ISO_IEC_14496-10_2012.zip
- [8] ISO/IEC 23009-1:2014. (2014). Dynamic adaptive streaming over HTTP (DASH) - Part 1: Media presentation description and segment formats. http://standards.iso.org/ittf/PubliclyAvailableStandards/c065274_ISO_IEC_23009-1_2014.zip
- [9] ITEC - Dynamic Adaptive Streaming over HTTP. (2015). http://www-itec.uni-klu.ac.at/dash/
- [10] Joint Scalable Video Model – reference software, (2015). http://www.hhi.fraunhofer.de/departments/video-codinganalytics/research-groups/image-videocoding/research-topics/svc-extension-ofh264avc/jsvm-reference-software.html
- [11] Kalva, H., Adzic, V., Furht, B. (2012). Comparing MPEG AVC and SVC for adaptive HTTP streaming. In Consumer Electronics (ICCE), 2012 IEEE International Conference on (pp. 158-159).
- [12] Mok, R.K., Luo, X., Chan, E.W., Chang, R.K. (2012). QDASH: a QoE-aware DASH system. In Proceedings of the 3rd Multimedia Systems Conference (pp. 11-22).
- [13] Ni, P., Eg, R., Eichhorn, A., Griwodz, C., Halvorsen, P. (2011). Flicker effects in adaptive video streaming to handheld devices. In Proceedings of the 19th ACM international conference on Multimedia (pp. 463-472). ACM
- [14] [14] Przyłucki, S. (2015). The Use of SVC Coding and HTTP Proxy For Adaptive Video Streaming Services Based on the DASH Standard. Studia Informatica, 36(2), 83-92
- [15] Sieber, C., Hoßfeld, T., Zinner, T., Tran-Gia, P., Timmerer, C. (2013). Implementation and Usercentric Comparison of a Novel Adaptation Logic for DASH with SVC. In Integrated Network Management (IM 2013), 2013 IFIP/IEEE International Symposium on (pp. 1318-1323)
- [16] Stockhammer, T. (2011). Dynamic adaptive streaming over HTTP–: standards and design principles. In Proceedings of the second annual ACM conference on Multimedia systems (pp. 133-144)
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Bibliografia
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bwmeta1.element.baztech-4a6f35b9-1583-43b7-8322-85c98d3b1070