Title :
An Inter-Layer Protection Scheme with Block-Based Interleaving for MPEG-DASH over WiFi Multicast
Author :
Shih-Ying Chang ; Hsin-Ta Chiao
Author_Institution :
Inf. & Commun. Res. Labs., Ind. Technol. Res. Inst., Hsinchu, Taiwan
Abstract :
To facilitate the distribution of video contents, MPEG-DASH (Dynamic Streaming over HTTP) standard is developed to provide standardized manifest format, content format and streaming protocol for adaptive streaming, thereby increasing interoperability of Internet TV services. Although DASH contents are delivered by HTTP without supporting data multicast, some studies shows the possibility of delivering DASH contents over multicast channels for better service scalability or service quality. These studies usually employ scalable videos (e.g., SVC videos) to support efficient adaptive streaming. In this paper, we try to improve the error protection capability for delivering SVC videos by using layer-aware FEC (L-FEC). We apply two conventional L-FEC schemes and found that the improvement in the construction using multiple multicast groups is quite limited. Therefore, we propose a new inter-layer protection scheme with block-based interleaving to improve the performance. We also evaluate the performance of the proposed scheme and compare it with other schemes over real WiFi networks. The result shows that the proposed scheme can improve the source block recovery rate by 0.47%~2.42% when employed in multiple multicast group construction.
Keywords :
forward error correction; multicast protocols; quality of service; transport protocols; video coding; video streaming; wireless LAN; Internet TV services; L-FEC schemes; MPEG-DASH; SVC videos; WiFi multicast channel; adaptive streaming; block-based interleaving; content format; data multicast; dynamic streaming over HTTP standard; error protection capability; inter-layer protection scheme; layer-aware FEC; multiple multicast group construction; service quality; source block recovery rate; standardized manifest format; streaming protocol; video content distribution; Encoding; Error correction codes; Forward error correction; IEEE 802.11 Standards; Static VAr compensators; Streaming media; Transform coding;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2014 IEEE 79th
Conference_Location :
Seoul
DOI :
10.1109/VTCSpring.2014.7022827