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An Accelerated H.264/AVC Encoder on Graphic Processing Unit for UAV Videos

机译:用于UAV视频的图形处理单元上的加速H.264 / AVC编码器

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With regards to the nature of high intensive computation for motion estimation with an H.264/AVC encoder, this paper presents a parallel block-matching algorithm implemented on a general purpose graphics processing units (GPU) to speed up the execution of UAV video coding. Traditional parallel block-matching algorithms are primarily used to leverage the huge number of computational cores in graphic processing units, which can be used to compute the block-matching operation at each candidate position in a search range by an independent thread of kernel computation. In realistic scenarios, the time used to transfer pixel values among the various memory modules to fulfill the operation in a GPU system is much higher than the computation time used for computing each block-matching operation by the kernel threads. This leads to a performance improvement bottleneck for GPU algorithm design. The proposed algorithm exploits the characteristics of distinct memory modules on the data transfer speed for the block-matching algorithm and proposes a feasible mechanism to reduce the bandwidth of data transmission required for the parallel block-matching algorithms implemented on GPU system. With experiments on GPU systems, the proposed parallel block-matching algorithm gains up to 99% execution reduction of motion estimation compared to the host processor only motion estimation process.
机译:至于高密集计算的性质用于运动估计与H.264 / AVC编码器,提出在通用图形处理单元(GPU)来加快UAV视频的执行编码实现的并联块匹配算法。传统的并行块匹配算法主要用于利用在图形处理单元计算核心,其可用于通过计算内核的一个独立的线程来计算在一搜索范围内的每个候选位置上的块匹配操作的数量巨大。在现实的情况下,用于传送像素值的各种存储器模块之间以满足在GPU系统的操作的时间比用于由内核线程计算每个块匹配操作的计算时间高很多。这导致了性能的改善瓶颈GPU算法设计。所提出的算法利用上的块匹配算法中的数据传送速度不同的存储器模块的特性,提出了一种可行的机制来减少用于GPU系统上实现的并联块匹配算法所需的数据传输的带宽。随着对GPU系统的实验中,所提出的并行块匹配算法获得高达相比主机处理器仅运动估计处理的运动估计的99%执行还原。

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