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Consideration of Scalable Transcoding Method in Video Content Delivery Methods for Quality Selection

机译:视频内容传输方法中质量选择的可伸缩转码方法的考虑

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Now, we often use video contents stream over the networks, however, we select the quality of video data according to their environments of access terminals, such as, network speed, CPU, graphic accelerator, size of local memory and hard disk and so on. Then, in video sites, multi-quality video contents are prepared for any user requirement, but from the point of view of data size, it makes not only the hardware cost of memory high, but also amount of video data over the network huge, so it is not efficiency. Moreover, from the video data structure, data compression is not enough in database. Then, we pay attention to scalability transcoding structure comparing with simulcast coding for multi-quality video. At this time, it is important that data transmission time and transcoding time are trade-off. In this paper, we use video access model with guaranteed bandwidth considering by data transmission and browsing. Moreover, we propose the video contents delivery methods with scalable transcoding, when users use multi-quality video, and evaluate transcoding time in video access model. By evaluation experiments, these situations of users' access are made clear. At this time, we indicated the case when proposed methods are more useful than simulcast type for multi-quality video. From the view point of transcoding time, influence of users' access time is clear in this model, comparing proposed methods with simulcast type by simulation experiments.
机译:现在,我们经常使用网络上的视频内容流,但是,我们根据访问终端的环境(例如网络速度,CPU,图形加速器,本地内存和硬盘大小等)来选择视频数据的质量。 。然后,在视频站点中,可以为任何用户需求准备多种质量的视频内容,但是从数据大小的角度来看,这不仅使存储器的硬件​​成本很高,而且使网络上的视频数据量巨大,所以不是效率。而且,从视频数据结构来看,数据库中的数据压缩还不够。然后,我们关注可扩展性转码结构与针对多质量视频的联播编码的比较。此时,重要的是要权衡数据传输时间和代码转换时间。在本文中,我们通过考虑数据传输和浏览来使用具有保证带宽的视频访问模型。此外,当用户使用多质量视频时,我们提出了具有可扩展转码的视频内容交付方法,并在视频访问模型中评估了转码时间。通过评估实验,明确了用户访问的这些情况。这时,我们指出了在多质量视频中,所提出的方法比联播类型更有用的情况。从转码时间的角度来看,在该模型中,通过仿真实验比较了所提方法与联播类型,对用户访问时间的影响是显而易见的。

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