DVB-H视频流的延迟约束模糊速率控制

M. Rezaei, M. Gabbouj, Imed Bouazizi
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引用次数: 8

摘要

针对DVB-H(手持终端数字视频广播)视频流,提出了一种具有延迟和质量约束的模糊视频速率控制算法(RCA)。在此应用中,可变比特率(VBR)比特流用于提高编码视频的质量和压缩性能,但代价是缓冲延迟,同时存在信道转换延迟。DVB-H采用分时传输方案来降低接收机的功耗。时间片方案放大了信道变化延迟。信道改变延迟的两个主要因素是媒体解码器被H.264/AVC中的随机接入点(如IDR(瞬时解码器刷新)图像)刷新之前的时间,以及补偿比特率变化的延迟。码流中频繁出现IDR图像可以降低解码器的平均刷新延迟,但会显著降低码流的质量和压缩效率。另一方面,VBR视频以更高的缓冲延迟为代价提供更高的质量。因此,在此应用程序中存在质量与延迟之间的多边矛盾。所提出的RCA已被优化,以提供高质量的VBR视频与最小的信道转换延迟。在H.264/AVC视频编码标准上的仿真结果表明,所提出的RCA编码码流严格遵守时延和质量约束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delay Constrained Fuzzy Rate Control for Video Streaming over DVB-H
A novel fuzzy video rate control algorithm (RCA) with delay and quality constraints is proposed for video streaming over DVB-H (Digital Video Broadcasting for Handheld terminals) application. In this application a variable bit rate (VBR) bit stream is used to improve the quality and compression performance of encoded video at the expense of buffering delay while there is a holdup as channel changing delay. DVB-H uses a time-sliced transmission scheme to reduce the power consumption for the receiver. The time-slice scheme amplifies the channel changing delay. Two main factors in channel changing delay are the time until a media decoder is refreshed by a random access point such as an IDR (Instantaneous Decoder Refresh) picture in H.264/AVC and the delay to compensate the variation in bit rate. The average decoder refresh delay can decrease by frequent IDR pictures in the bit stream while it drops the quality and compression efficiency remarkably. On the other hand, a VBR video provides higher quality at the expense of higher buffering delay. Hence force, there is a multilateral contradiction between the quality and delay in this application. The proposed RCA has been optimized to provide high quality VBR video with minimum channel changing delay. Simulation results on H.264/AVC video coding standard show that encoded bit streams by proposed RCA strictly obey the delay and quality constraints.
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