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Optimization of the motion estimation for parallel embedded systems in the context of new video standards

机译:在新视频标准下优化并行嵌入式系统的运动估计

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The effciency of video compression methods mainly depends on the motion compensation stage, and the design of effcient motion estimation techniques is still an important issue. An highly accurate motion estimation can significantly reduce the bit-rate, but involves a high computational complexity. This is particularly true for new generations of video compression standards, MPEG AVC and HEVC, which involves techniques such as different reference frames, sub-pixel estimation, variable block sizes. In this context, the design of fast motion estimation solutions is necessary, and can concerned two linked aspects: a high quality algorithm and its effcient implementation. This paper summarizes our main contributions in this domain. In particular, we first present the HME (Hierarchical Motion Estimation) technique. It is based on a multi-level refinement process where the motion estimation vectors are first estimated on a sub-sampled image. The multi-levels decomposition provides robust predictions and is particularly suited for variable block sizes motion estimations. The HME method has been integrated in a AVC encoder, and we propose a parallel implementation of this technique, with the motion estimation at pixel level performed by a DSP processor, and the sub-pixel refinement realized in an FPGA. The second technique that we present is called HDS for Hierarchical Diamond Search. It combines the multi-level refinement of HME, with a fast search at pixel-accuracy inspired by the EPZS method. This paper also presents its parallel implementation onto a multi-DSP platform and the its use in the HEVC context.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:视频压缩方法的效率主要取决于运动补偿阶段,有效的运动估计技术的设计仍然是一个重要的问题。高度精确的运动估计可以显着降低比特率,但是会带来很高的计算复杂度。对于新一代视频压缩标准MPEG AVC和HEVC尤其如此,其中涉及诸如不同参考帧,子像素估计,可变块大小等技术。在这种情况下,快速运动估计解决方案的设计是必要的,并且可以涉及两个相关方面:高质量算法及其有效实现。本文总结了我们在该领域的主要贡献。特别是,我们首先介绍了HME(分层运动估计)技术。它基于多级细化过程,其中首先在子采样图像上估计运动估计矢量。多级分解提供了鲁棒的预测,尤其适合于可变块大小的运动估计。 HME方法已集成在AVC编码器中,我们提出了该技术的并行实现,其中DSP处理器执行像素级运动估计,而FPGA中实现子像素优化。我们介绍的第二种技术称为“用于层次钻石搜索的HDS”。它结合了HME的多级细化和EPZS方法启发的像素精度快速搜索。本文还介绍了其在多DSP平台上的并行实现及其在HEVC上下文中的使用。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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