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Motion-Based Rate Adaptation in WebRTC Videoconferencing Using Scalable Video Coding

机译:使用可伸缩视频编码的WebRTC视频会议中基于运动的速率自适应

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This paper proposes methods for rate adaptation by motion-based spatial and temporal resolution selection in both mesh-connected and selective-forwarding-unit (SFU) connected WebRTC videoconferencing using scalable video coding. In the mesh-connected case, the proposed motion-adaptive spatial/temporal layer selection allows each peer to send video to different peers with different terminal types and network rates at different rates using a single encoder. In the SFU-connected case, motion-adaptive rate control is used both at peers to adapt to the network rate between the sending peer and SFU by spatio-temporal resolution adaptation and at the SFU by layer selection to adapt to the network rate between the SFU and receiving peer. Experimental results show that our proposed motion-based rate adaptation achieves better perceptual video quality with sufficiently high frame rates and lower quantization parameter for video with high motion; and high spatial resolution and lower quantization parameter for video with low motion compared to simple rate-distortion model-based layer selection that does not use motion complexity, at the same rate.
机译:本文提出了使用可伸缩视频编码在网状连接和选择性转发单元(SFU)连接的WebRTC视频会议中通过基于运动的空间和时间分辨率选择进行速率自适应的方法。在网状连接的情况下,建议的运动自适应空间/时间层选择允许每个对等方使用单个编码器以不同的速率将视频发送给具有不同终端类型和网络速率的不同对等方。在连接SFU的情况下,运动匹配速率控制既可以在对等端使用,以通过时空分辨率自适应来适应发送对端和SFU之间的网络速率,也可以在SFU中通过层选择来适应在SFU之间的网络速率。 SFU和接收对等体。实验结果表明,我们提出的基于运动的速率自适应能够以较高的帧速率和较低的量化参数来获得高运动视频的更好的感知视频质量;相较于不使用运动复杂度的简单,基于速率失真模型的相同层选择,相比低速率运动,视频具有较高的空间分辨率和较低的量化参数。

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