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Improved DASH for Cross-Random-Access Prediction Structure in Video Coding

机译:改进的DASH用于视频编码中的跨随机访问预测结构

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In video coding, temporal correlations between pictures are utilized by short-term and long-term reference, which are limited inside a random access segment and cannot cross random access points (RAPs). To improve coding efficiency, correlations across RAPs are exploited by some novel video coding schemes. The cross-random-access prediction structure results in alterable dependency between pictures, which is affected by random access and different from the fixed dependency in conventional video coding standard. However, current media streaming scheme, such as Dynamic Adaptive Streaming over HTTP (DASH), cannot describe dependency across RAPs. This paper introduces the cross-random-access dependency description in DASH syntax. With dependency information, client can download segments in proper temporal order but may re-download segments. This paper further improves downloading management in client. Experiments show that improved DASH system transmitting stream with cross-random-access prediction structure can save 22.1% on maximum and 14.3% on average transmission bits in contrast to conventional DASH system.
机译:在视频编码中,图片之间的时间相关性被短期和长期参考所利用,它们被限制在随机访问段内并且不能穿越随机访问点(RAP)。为了提高编码效率,一些新颖的视频编码方案利用了跨RAP的相关性。跨随机访问预测结构导致图片之间的可变依赖关系,该可变依赖关系受到随机访问的影响,并且不同于常规视频编码标准中的固定依赖关系。但是,当前的媒体流传输方案,例如HTTP动态自适应流传输(DASH),无法描述跨RAP的依赖性。本文介绍了DASH语法中的跨随机访问依赖项描述。有了依存关系信息,客户端可以按适当的时间顺序下载段,但可以重新下载段。本文进一步改进了客户端的下载管理。实验表明,与传统的DASH系统相比,具有交叉随机访问预测结构的改进型DASH系统传输流最大可节省22.1%,在平均传输位上可节省14.3%。

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