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Pattern-based integer sample motion search strategies in the context of HEVC

机译:HEVC上下文中基于模式的整数样本运动搜索策略

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The H.265/MPEG-H High Efficiency Video Coding (HEVC) standard provides a significant increase in coding efficiency compared to its predecessor, the H.264/MPEG-4 Advanced Video Coding (AVC) standard, which however comes at the cost of a high computational burden for a compliant encoder. Motion estimation (ME), which is a part of the inter-picture prediction process, typically consumes a high amount of computational resources, while significantly increasing the coding efficiency. In spite of the fact that both H.265/MPEG-H HEVC and H.264/MPEG-4 AVC standards allow processing motion information on a fractional sample level, the motion search algorithms based on the integer sample level remain to be an integral part of ME. In this paper, a flexible integer sample ME framework is proposed, thereby allowing to trade off significant reduction of ME computation time versus coding efficiency penalty in terms of bit rate overhead. As a result, through extensive experimentation, an integer sample ME algorithm that provides a good trade-off is derived, incorporating a combination and optimization of known predictive, pattern-based and early termination techniques. The proposed ME framework is implemented on a basis of the HEVC Test Model (HM) reference software, further being compared to the state-of-the-art fast search algorithm, which is a native part of HM. It is observed that for high resolution sequences, the integer sample ME process can be speed-up by factors varying from 3.2 to 7.6, resulting in the bit-rate overhead of 1.5% and 0.6% for Random Access (RA) and Low Delay P (LDP) configurations, respectively. In addition, the similar speed-up is observed for sequences with mainly Computer-Generated Imagery (CGI) content while trading off the bit rate overhead of up to 5.2%.
机译:与之前的H.264 / MPEG-4高级视频编码(AVC)标准相比,H.265 / MPEG-H高效视频编码(HEVC)标准显着提高了编码效率。顺应性编码器的高计算负担。作为画面间预测过程的一部分的运动估计(ME)通常会消耗大量的计算资源,同时会显着提高编码效率。尽管H.265 / MPEG-H HEVC和H.264 / MPEG-4 AVC标准都允许在分数样本级别上处理运动信息,但基于整数样本级别的运动搜索算法仍然是不可或缺的我的一部分。在本文中,提出了一种灵活的整数样本ME框架,从而可以在降低比特率开销方面权衡ME计算时间与编码效率损失之间的权衡。结果,通过广泛的实验,得出了一个提供良好折衷的整数样本ME算法,结合了已知的预测,基于模式和早期终止技术的组合和优化。所提出的ME框架是在HEVC测试模型(HM)参考软件的基础上实现的,并且与最新的快速搜索算法进行了比较,后者是HM的固有组成部分。可以观察到,对于高分辨率序列,整数样本ME处理可以通过从3.2到7.6的因子加速,从而导致随机访问(RA)和低延迟P的比特率开销分别为1.5%和0.6% (LDP)配置。此外,对于主要包含计算机生成图像(CGI)内容的序列,也观察到了类似的提速,同时权衡了高达5.2%的比特率开销。

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