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首页> 外文期刊>Journal of Real-Time Image Processing >Fast motion estimation for HEVC on graphics processing unit (GPU)
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Fast motion estimation for HEVC on graphics processing unit (GPU)

机译:图形处理器(GPU)上HEVC的快速运动估计

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摘要

The recent video compression standard, HEVC (high efficiency video coding), will most likely be used in various applications in the near future. However, the encoding process is far too slow for real-time applications. At the same time, computing capabilities of GPUs (graphics processing units) have become more powerful in these days. In this paper, we have proposed a GPU-based parallel motion estimation (ME) algorithm to enhance the performance of an HEVC encoder. A frame is partitioned into two subframes for pipelined execution to improve GPU utilization. The flow chart is redetermined to solve data hazards in the pipelined execution. Two new methods are introduced in the proposed ME: decision of a representative search center position (RSCP) and warp-based concurrent parallel reduction (WCPR). A RSCP employs motion vectors of a co-located CTU in a previously encoded frame to solve a dependency problem in parallel computation with negligible coding loss. WCPR concurrently executes several parallel reduction operations, which increases the thread utilization from 20 to 89 % without any thread synchronization. The proposed encoder can make the portion of ME in the encoder negligible with 2.2 % bitrate increase against the HEVC test model (HM) encoder. In terms of ME, the proposed ME is 130.7 times faster than that of the HM encoder.
机译:最近的视频压缩标准HEVC(高效视频编码)很可能会在不久的将来用于各种应用中。但是,对于实时应用程序而言,编码过程太慢了。同时,近来,GPU(图形处理单元)的计算能力变得越来越强大。在本文中,我们提出了一种基于GPU的并行运动估计(ME)算法,以增强HEVC编码器的性能。帧被划分为两个子帧以进行流水线执行以提高GPU利用率。重新确定流程图以解决流水线执行中的数据危险。拟议的ME中引入了两种新方法:代表搜索中心位置的决策(RSCP)和基于扭曲的并发并行约简(WCPR)。 RSCP在先前编码的帧中使用位于同一位置的CTU的运动矢量,以解决并行计算中的依赖性问题,且编码损失可忽略不计。 WCPR同时执行几个并行的减少操作,从而在没有任何线程同步的情况下将线程利用率从20%提高到89%。相对于HEVC测试模型(HM)编码器,所提出的编码器可以使编码器中的ME部分忽略不计,且比特率增加2.2%。就ME而言,拟议的ME比HM编码器快130.7倍。

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