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Rate-Distortion and Complexity Joint Optimization for Fast Motion Estimation In H.264 Video Coding

机译:H.264视频编码中快速运动估计的速率失真和复杂性联合优化

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H.264 video coding standard offers several coding modes including inter-prediction modes that use macroblock partitions with variable block sizes, Choosing a rate-distortion optimal mode among these possibilities contributes significantly to the superior coding efficiency of the H.264 encoder. Unfortunately, searching for optimal motion vectors of each possible subblock incurs a heavy computational cost, In this paper, in order to reduce the complexity of integer-pel motion estimation, we propose a rate-distortion and complexity-joint optimization method that selects for each MB a subset of partitions to evaluate during motion estimation. This selection is based on simple, measures of spatio-temporal activity within the MB. The procedure is optimized to minimize mode estimation error at a certain level of computational complexity. Simulation results show that the algorithm speeds up the motion estimation module by a factor of up to 20 with little loss in coding efficiency
机译:H.264视频编码标准提供了几种编码模式,包括使用可变块大小的宏块分区的预测模式,这些可能性在这些可能性之间选择速率失真最佳模式,显着贡献了H.264编码器的卓越编码效率。 不幸的是,在本文中寻找每个可能的子块的最佳运动向量,以减少整数 - PEL运动估计的复杂性,提出了一种选择的速率失真和复杂性关节优化方法 MB在运动估计期间评估分区的子集。 该选择基于MB内的简单测量时空活动。 优化过程以最小化在一定程度的计算复杂度下的模式估计误差。 仿真结果表明,该算法将运动估计模块加速多达20个,编码效率很小

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