Title :
Profile-Based Scalable Video Adaptation Employing MD-FEC Interleaving over Loss-Burst Channels
Author :
Sheau-Ru Tong ; Huan-Wen Chen ; Cheng-Han Yang
Author_Institution :
Dept. of Manage. Inf. Syst., Nat. Pingtung Univ. of Sci. & Technol., Pingtung, Taiwan
Abstract :
Loss-burst channels impose a grand challenge on delivery of scalable video streams with assured perceptual quality. Previous works seek for distortion optimization through joint adaptation of video layers and unequal error protection(UEP) at the application layer. However, such optimization usually incurs high computational cost and is hard to accurately estimate perceptual quality. In this paper, we propose an application-layer profile-based adaptation framework. We first propose a profile-based distortion model, which specifies a spectrum of target perceptual qualities along with their protection requirements. During transmission, we then employ a simple interleaved MD-FEC adaptation algorithm which finds the best target quality of which required protection can be supported subject to the current available bandwidth and loss condition. Through simulation, we confirm that our scheme can agilely perform the adaptation for scalable videos with profile specific perceptual quality guarantee even in highly loss-burst channels, compared with the ones applying fixed-UEP/interleaving or no protection.
Keywords :
channel coding; distortion; forward error correction; interleaved codes; video coding; video streaming; UEP; application-layer profile-based adaptation framework; assured perceptual quality; distortion optimization; high computational cost; interleaved MD-FEC adaptation algorithm; loss condition; loss-burst channels; multiple-descriptor forward-error-correction code; profile-based distortion model; profile-based scalable video adaptation; scalable video stream delivery; unequal error protection; video layer joint adaptation; Adaptation models; Bandwidth; Encoding; Gold; Packet loss; Streaming media; interleaving; multiple-descriptor FEC; perceptual quality control; scalable video adaptation; scalable video coding; unequal-error-protection;
Conference_Titel :
Computer Software and Applications Conference Workshops (COMPSACW), 2014 IEEE 38th International
Conference_Location :
Vasteras
DOI :
10.1109/COMPSACW.2014.102