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GPU-based Fast Motion Estimation for On-the-Fly Encoding of Computer-Generated Video Streams

机译:基于GPU的基于GPU的快速运动估计,用于计算机生成的视频流的动态编码

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Motion estimation is known to be one of the most expensive tasks in video coding as it is usually performed through blind search-based methods. However, in the particular case of computer-generated video, the rendering stage provides useful information to speed up the process. In this paper, we propose a fast motion estimation algorithm, designed to run completely inside the GPU, to compute the optical flow required to estimate motion vectors at the same time as the graphical rendering process by using high-level information about the objects, viewpoints and effects that define each frame. The proposed method, takes advantage of GPU parallelism and avoids bottlenecks in the GPU-GPU communication as the entire rendering and encoding process is performed completely inside the GPU. Avoiding search, motion estimation has very little overhead, negligible when compared with rendering and (the rest of the) video encoding costs while maintaining reasonably good quality. Performance evaluation is done with a CUDA implementation for MPEG-2 video, though results are valid for other formats, and it has been tested as part of the rendering and encoding engine of a real-world system that provides server-side visually-rich interactive applications to lightweight clients equipped with standard MPEG video decoders.
机译:已知运动估计是视频编码中最昂贵的任务之一,因为它通常通过基于盲搜查的方法执行。然而,在计算机生成视频的特定情况下,渲染阶段提供了加速过程的有用信息。在本文中,我们提出了一种快速运动估计算法,设计用于完全在GPU内部运行,以计算通过使用关于对象的高级信息的图形渲染过程同时计算运动矢量所需的光学流量。和定义每个帧的效果。所提出的方法,利用GPU并行性,避免GPU-GPU通信中的瓶颈,因为整个渲染和编码过程在GPU内完成。避免搜索,与渲染和(其余的)视频编码成本相比,运动估计的运动估计很少,并且在维持合理质量的同时相比。使用MPEG-2视频的CUDA实现进行了性能评估,但结果对于其他格式有效,并且它被测试为现实世界系统的渲染和编码引擎的一部分,其提供服务器端视觉上丰富的交互式用于轻量级客户端配备标准MPEG视频解码器的应用。

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