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Content-adpative H.264 rate control for live screencasting

机译:内容自适应的H.264速率控制,用于实时截屏

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Live screencasting involves encoding and streaming the screen content of a PC in real-time. Most existing H.264 rate control (RC) algorithms are designed for natural scenes and do not perform well with the quite different signal characteristics of screencasting. This paper proposes a content-adaptive H.264 RC scheme which classifies screen content as “slow-motion” phase or “fast-motion” phase on the fly, based on the temporal and spatial frame-area update pattern of recent frames. Then, for frames in “slow-motion” phase, which usually result from a presenter's GUI operations, a new RC algorithm named Frame Rate Adaptive-CQP (FRA-CQP) is applied, which puts priority on the quality of individual frame rather than the frame rate. For frames in “fast-motion” phase, which usually result from playing a movie during the presentation, the classical CRF+VBV RC algorithm is applied. Evaluation results show this adaptive RC scheme can regularly achieves higher subjective quality assessment score (0.7 to 1.6 points on a 1–5 scale) than existing algorithms while meeting the RC objective.
机译:实时截屏包括对PC的屏幕内容进行实时编码和流式传输。现有的大多数H.264速率控制(RC)算法都是为自然场景而设计的,并且在截屏的信号特性截然不同的情况下效果不佳。本文提出了一种内容自适应的H.264 RC方案,该方案基于最近帧的时间和空间帧区域更新模式,将屏幕内容动态地分为“慢动作”阶段或“快速”阶段。然后,对于通常由演示者的GUI操作导致的处于“慢动作”阶段的帧,将应用一种称为帧率自适应CQP(FRA-CQP)的新RC算法,该算法将优先级放在单个帧的质量上,而不是帧速率。对于处于“快速运动”阶段的帧(通常是由于在演示过程中播放电影而导致的帧),将应用经典的CRF + VBV RC算法。评估结果表明,该自适应RC方案可以在达到RC目标的同时,定期获得比现有算法更高的主观质量评估得分(1-5级为0.7至1.6分)。

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