Optimization of encoding and error protection parameters for 3D Video Broadcast over DVB-H

A. Aksay, Döne Buğdaycı, G. Akar
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引用次数: 3

Abstract

In this study, we propose a heuristic methodology for modeling the end-to-end distortion characteristics of an error resilient broadcast system for 3D video over Digital Video Broadcasting - Handheld (DVB-H).We also use this model to optimally select the parameters of the video encoder and the error correction scheme, namely, Multi Protocol Encapsulation - Forward Error Correction (MPE-FEC), minimizing the overall distortion. The proposed method models the RQ curve of video encoder and performance of channel codec to jointly derive the optimal encoder bit rates and unequal error protection (UEP) rates specific to the 3D video broadcast. Moreover, the distortion on the 3D video quality caused by packet losses and the loss rate of the channel is estimated. Finally, with the use of analytical models and estimated single packet loss distortions, end-to-end distortions are minimized and optimal encoder bit rates and UEP rates are obtained.
基于DVB-H的3D视频广播编码和纠错参数优化
在这项研究中,我们提出了一种启发式方法,用于模拟基于数字视频广播-手持(DVB-H)的3D视频的错误弹性广播系统的端到端失真特性。我们还使用该模型来优化选择视频编码器的参数和纠错方案,即多协议封装-前向纠错(MPE-FEC),最大限度地减少整体失真。该方法对视频编码器的RQ曲线和信道编解码器的性能进行建模,共同得出针对3D视频广播的最佳编码器比特率和不等错保护(UEP)率。此外,还估计了丢包和信道丢失率对三维视频质量的影响。最后,利用分析模型和估计的单包丢失失真,最小化端到端失真,并获得最佳编码器比特率和UEP率。
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