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Fast Motion Estimation System Using Dynamic Models for H.264/AVC Video Coding

机译:动态模型的H.264 / AVC视频编码快速运动估计系统

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H.264/AVC offers many coding tools for achieving high compression gains of up to 50% more than other standards. These tools dramatically increase the computational complexity of the block based motion estimation (BB-ME) which consumes up to 80% of the entire encoder's computations. In this paper, computationally efficient accurate skipping models are proposed to speed up any BB-ME algorithm. First, an accurate initial search center (ISC) is decided using a smart prediction technique. Thereafter, a dynamic early stop search termination (DESST) is used to decide if the block at the ISC position can be considered as a best match candidate block or not. If the DESST algorithm fails, a less complex style of the motion estimation algorithm which incorporates dynamic padding window size technique will be used. Further reductions in computations are achieved by combining the following two techniques. First, a dynamic partial internal stop search technique which utilizes an accurate adaptive threshold model is exploited to skip the internal sum of absolute difference operations between the current and the candidate blocks. Second, a dynamic external stop search technique greatly reduces the unnecessary operations by skipping all the irrelevant blocks in the search area. The proposed techniques can be incorporated in any block matching motion estimation algorithm. Computational complexity reduction is reflected in the amount of savings in the motion estimation encoding time. The novelty of the proposed techniques comes from their superior saving in computations with an acceptable degradation in both peak signal-to-noise ratio (PSNR) and bit-rate compared to the state of the art and the recent motion estimation techniques. Simulation results using H.264/AVC reference software (JM 12.4) show up to 98% saving in motion estimation time using the proposed techniques compared to the conventional full search algorithm with a negligible degradation in the PSNR by approximately 0.05 -n-ndB and a small increase in the required bits per frame by only 2%. Experimental results also prove the effectiveness of the proposed techniques if they are incorporated with any fast BB-ME technique such as fast extended diamond enhanced predictive zonal search and predictive motion vector field adaptive search technique.
机译:H.264 / AVC提供了许多编码工具,可实现比其他标准高50%的高压缩增益。这些工具极大地增加了基于块的运动估计(BB-ME)的计算复杂度,该计算消耗了整个编码器计算的80%。在本文中,提出了计算效率高的精确跳跃模型,以加快任何BB-ME算法的速度。首先,使用智能预测技术确定准确的初始搜索中心(ISC)。此后,动态提前停止搜索终止(DESST)用于确定ISC位置处的块是否可以视为最佳匹配候选块。如果DESST算法失败,将使用结合动态填充窗口大小技术的不太复杂的运动估计算法。通过组合以下两种技术,可以进一步减少计算量。首先,利用了利用精确的自适应阈值模型的动态局部内部停止搜索技术来跳过当前块与候选块之间的绝对差运算的内部和。其次,动态外部停止搜索技术通过跳过搜索区域中所有不相关的块,大大减少了不必要的操作。所提出的技术可以被结合在任何块匹配运动估计算法中。计算复杂度的降低反映在运动估计编码时间的节省量上。与现有技术和最新的运动估计技术相比,所提出的技术的新颖性在于它们在计算方面的出色节省,并且峰值信噪比(PSNR)和比特率都有可接受的降低。与传统的全搜索算法相比,使用H.264 / AVC参考软件(JM 12.4)进行的仿真结果显示,与传统的全搜索算法相比,使用本提议的技术可节省多达98%的运动估计时间,而PSNR的下降幅度可忽略不计,约为0.05 -n-ndB,每帧所需位数仅增加了2%。如果将其与任何快速BB-ME技术(例如快速扩展钻石增强的预测区域搜索和预测运动矢量场自适应搜索技术)结合使用,实验结果也证明了所提出技术的有效性。

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