首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Motion Estimation Based on Spline Interpolation in H.264/AVC Video Coder for Videoconferencing Application: Performance Versus Computation Load
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Motion Estimation Based on Spline Interpolation in H.264/AVC Video Coder for Videoconferencing Application: Performance Versus Computation Load

机译:用于视频会议的H.264 / AVC视频编码器中基于样条插值的运动估计:性能与计算负荷

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摘要

The powerful H.264/AVC video coder involves a large encoding computational cost than the existing video standards due mainly to the motion-compensated estimation scheme based on a full search of multiple reference frames in the sequence. This strategy decreases the residual errors of the predicted frames and may improve the performance of the video coder. However a great number of computations are usually wasted without improving significantly the quality of the decoded video mostly in videoconferencing applications. To reduce the encoding computational load and preserve the performance of the video coder, this paper proposes to substitute the motion-compensated estimation method implemented in H.264/AVC by a temporal spline interpolation. Simulations on several test sequences show that important encoding saving times are achieved with a competitive quality of the decoded video compared to the exhaustive search of multiple reference frames in the H.264/AVC video coder.
机译:强大的H.264 / AVC视频编码器比现有的视频标准涉及更大的编码计算成本,这主要是由于基于序列中多个参考帧的完全搜索的运动补偿估计方案。该策略减少了预测帧的残留误差,并可以提高视频编码器的性能。然而,通常在视频会议应用中,通常浪费大量计算,而没有显着提高解码视频的质量。为了减少编码的计算量并保持视频编码器的性能,本文提出用时间样条插值代替在H.264 / AVC中实现的运动补偿估计方法。在多个测试序列上进行的仿真表明,与在H.264 / AVC视频编码器中全面搜索多个参考帧相比,解码视频的竞争质量可实现重要的编码节省时间。

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