1Mbps就足够了:多方高清视频会议的视频质量和个人特性

Marwin Schmitt, J. Redi, Pablo César, D. Bulterman
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引用次数: 17

摘要

大多数视频平台以高比特率编码提供高清视频。现代视频会议系统能够处理高清数据流,但使用多方会议时,家庭的平均互联网连接受到带宽限制。为了正确管理视频会议中的编码比特率,我们必须知道为用户提供可接受的体验所需的最小比特率是多少,以及QoE饱和的比特率是多少。在这一领域,大多数现有的主观研究都使用了相当过时的技术。我们报告了一项关于高清分辨率视频质量的多方研究。我们测试了不同的编码比特率(256kbs、1024kbs和4096kbs)和丢包率(0,0.5%),每组4人,基于ITU构建块任务的场景。我们基于不同的混合模型讨论了群体互动和个人特质的影响,并将协变量参与度和享受作为进一步的解释因素。我们发现256kbs仍然足以提供公平的整体体验,但视频质量很差。在比特率较高的一端,大多数人不会感觉到1024kbs和4096kbs之间的差异,因为在这两种情况下,质量都接近优秀。在不考虑比特率的情况下,丢包的影响虽小但意义重大,在ITU的5分制中,丢包的影响平均不到0.5分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
1Mbps is enough: Video quality and individual idiosyncrasies in multiparty HD video-conferencing
Most video platforms deliver HD video in high bitrate encoding. Modern video-conferencing systems are capable of handling HD streams, but using multiparty conferencing, average internet connections in the home are on their bandwidth limit. For properly managing the encoding bitrate in videoconferencing, we must know what is the minimum bitrate requirement to provide users an acceptable experience, and what is the bitrate level after which QoE saturates?. Most available subjective studies in this area used rather dated technologies. We report on a multiparty study on video quality with HD resolution. We tested different encoding bitrates (256kbs, 1024kbs and 4096kbs) and packet loss rates (0, 0.5%) in groups of 4 participants with a scenario based on the ITU building blocks task. We discuss the influence of group interaction and individual idiosyncrasies based on different mixed models, and look at covariates engagement and enjoyment as further explanatory factors. We found that 256kbs is still sufficient to provide a fair overall experience, but video quality is noticed to be poor. On the higher bitrate end, most people will not perceive the difference between 1024kbs and 4096kbs, considering in both cases the quality to be close to excellent. Independent on bitrate, packet loss has a small but significant impact, quantifiable in, on average, less than half a point difference on a 5-point ITU scale.
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