Improved motion estimation algorithm based on integrity index and its implementation in x265

V. More, M. Sutaone
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Abstract

With the development of fast motion estimation (ME) algorithms towards video compression standard H.264, burden on integer-pel ME is slightly reduced. However the integer-pel ME is becoming computationally complex due to demand of higher and higher resolution videos. On the other hand, there is always trade-off between the speed and performance of these search algorithms. This work improvises the performance of content awareness enabled integer-pel ME algorithm for encoding the fast and slow motion video sequences of high definition (HD) resolution category viz. 1280×720 and 1920×1080. The algorithm proposes a novel notion of 'integrity index' with focus on increasing the PSNR and reducing the bit rate. It is implemented in the frame work of x265 version 1.7 video encoder. Motion independent ME algorithm is analysed quantitatively in terms of parameters based on rate distortion and ME time. The proposed algorithm is found to be performing better on BD-Rate and BD-PSNR parameters for the videos of both resolutions under consideration. Observed increase in motion estimation time is less than four seconds compared to hexagonal search algorithm of ME which is the benchmark in fast ME algorithm.
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基于完整性索引的改进运动估计算法及其在x265中的实现
随着快速运动估计(ME)算法向视频压缩标准H.264的发展,整数运动估计的负担略有减轻。然而,由于对视频分辨率的要求越来越高,积分式视频计算变得越来越复杂。另一方面,这些搜索算法的速度和性能之间总是存在权衡。这项工作改进了内容感知集成ME算法的性能,用于编码高清晰度(HD)分辨率类别(1280×720和1920×1080)的快速和慢动作视频序列。该算法提出了一种新颖的“完整性指数”概念,重点是提高PSNR和降低比特率。它是在x265版本1.7视频编码器的框架工作中实现的。从参数的角度定量分析了基于速率失真和ME时间的运动无关ME算法。对于两种分辨率的视频,该算法在BD-Rate和BD-PSNR参数上都有较好的表现。观察到运动估计时间比快速运动估计算法中的六边形搜索算法增加了不到4秒。
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