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A low complexity and computationally scalable fast motion estimation algorithm for HEVC

机译:HEVC的低复杂性和计算可伸缩的快速运动估计算法

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摘要

Motion Estimation (ME) is one of the most computationally demanding parts of video encoders. The Test Zone (TZ) search is a popular fast ME algorithm, which is recommended for High-Efficiency Video Coding (HEVC). While the TZ search achieves an excellent coding efficiency, it is not a favorable choice for hardware implementations due to 1) a relatively high computational complexity, 2) inducing data dependency among the neighboring blocks, which complicates hardware implementations and parallel processing in software implementations, and 3) lack of computational adjustability, which is required for video encoding in power-constrained devices. This paper diagnoses the cause of these issues to be in the multiple starting search points of the TZ search algorithm. Accordingly, a method is proposed to find a single reliable starting point that replaces the first step of the TZ search algorithm. To do so, both current and reference frames are analyzed using a complex wavelet transform, and similar salient points are identified among the two frames. Then a light-weight process is used to match these points to find a single reliable starting point. The reliability of this point leads to reduced zonal refinement range with negligible cost in compression efficiency. Since adjusting the refinement range can be used as an effective way for adjusting the complexity, this results in a computationally scalable ME algorithm, named FMECWT. In contrast to the existing methods, FMECWT does not rely on neighboring blocks, which eliminates the inherent data dependency of TZ search. Experimental results show that FMECWT achieves ~35% to -85% ME time reduction compared to TZ search, with only 0.1% to 1.7% increase in BD-Rate.
机译:运动估计(ME)是视频编码器的最具计算要求最高的部分之一。测试区(TZ)搜索是一种流行的快速ME算法,建议用于高效视频编码(HEVC)。虽然TZ搜索实现了优异的编码效率,但由于1)的硬件实现不是一个有利的选择性的计算复杂度,2)诱导相邻块之间的数据依赖性,其使硬件实现和软件实现中的并行处理复杂化, 3)缺乏计算可调节性,这是功率受限设备中的视频编码所必需的。本文诊断了这些问题的原因在于TZ搜索算法的多个起始搜索点。因此,提出了一种方法来找到替换TZ搜索算法的第一步的单个可靠起点。为此,使用复杂的小波变换来分析电流和参考帧,并且在两个帧中识别出类似的突出点。然后,光重过程用于匹配这些点以找到单个可靠的起点。这一点的可靠性导致区域细化范围减小,压缩效率的成本可忽略不计。由于调整细化范围可以用作调整复杂性的有效方法,因此这导致计算可扩展的ME算法,名为FMECWT。与现有方法相比,FMECWT不依赖于相邻块,其消除了TZ搜索的固有数据依赖性。实验结果表明,与TZ搜索相比,FMECWT实现〜35%至-85%的时间减少,BD速率增加了0.1%至1.7%。

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