A hardware architecture of skip/direct mode for AVS3

Yingbo Wen, Guoqing Xiang, Yunyao Yan, Xizhong Zhu, Xiaofeng Huang, Peng Zhang, Wei Yan
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Abstract

Skip/direct mode is one of the inter prediction modes in video coding, which achieves a high coding performance. In Audio and Video coding Standard-3(AVS3), skip/direct has improved more performance with more candidate modes. The candidate mode list is generated by numerous prediction directions with corresponded predicted motion vectors. However, it will result in higher computation complexities and challenges to parallel computation, especially for the hardware implementation. For resolving the problem, we propose a hardware architecture of skip/direct mode with a fast motion vector prediction (MVP) algorithm in this paper. Our architecture is designed with efficient pipeline schedules. And the fast MVP algorithm can reduce the number of MVP candidates efficiently. The fast MVP method is introduced by setting a search window, some unnecessary MVP are skipped, thereby reducing the computational complexity firstly. Then the proposed hardware architecture is given with efficient pipeline schedules in detail. The experimental results show that our architecture is able to meet the requirement of 3840x2160@60FPS with only 0.48% and 0.42% BD-Rate increase under the low delay P (LDP) and random access (RA) configurations, respectively.
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AVS3的跳过/直接模式的硬件架构
跳过/直接模式是视频编码中的一种相互预测模式,具有较高的编码性能。在音视频编码标准3(AVS3)中,跳过/直接通过更多的候选模式提高了性能。候选模式列表由多个预测方向和相应的预测运动向量生成。然而,这将导致更高的计算复杂度和对并行计算的挑战,特别是对硬件实现的挑战。为了解决这一问题,本文提出了一种带有快速运动矢量预测(MVP)算法的跳过/直接模式硬件架构。我们的架构设计具有高效的流水线调度。快速的MVP算法可以有效地减少候选MVP的数量。引入快速MVP方法,通过设置搜索窗口,跳过一些不必要的MVP,从而首先降低了计算复杂度。然后给出了基于高效流水线调度的硬件架构。实验结果表明,在低延迟P (LDP)和随机访问(RA)配置下,我们的架构能够分别以0.48%和0.42%的BD-Rate增长率满足3840x2160@60FPS的要求。
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