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Fast Scheme for the Four-Step Search Algorithm in Video Coding

机译:视频编码中四步搜索算法的快速方案

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Due to the high computational complexity of the full-search algorithm, fast block motion estimation algorithms are needed for real-time implementations of the current video coding standards. Recently, a four-step search algorithm for block motion estimation has been proposed in the literature. In this paper, a fast scheme for the four-step search algorithm is proposed to reduce the computational complexity of the four-step search algorithm without loss of its accuracy. By using eight-bit partial sums and the corresponding lower bound for the modified sum of absolute difference (MSAD) criterion in the proposed scheme, a large number of candidate motion vectors are discarded while still retaining the optimal motion vector of the four-step search algorithm. In this way, the computational requirement of the four-step search algorithm is significantly reduced while maintaining its accuracy. It is shown that the byte-type data-parallelism on a single instruction multiple data (SIMD) architecture can be utilized to further accelerate the execution of the proposed scheme. Simulations of the scheme are carried out for various benchmark video sequences and the results demonstrate that the new scheme can reduce the computational complexity of the four-step search algorithm by 20 to 40 percent with no loss of its accuracy.
机译:由于全搜索算法的高计算复杂性,所需的快速块运动估计算法对于当前视频编码标准的实时实现。近来,在文献中提出了一种用于块运动估计的四步搜索算法。在本文中,提出了一种快速方案,用于减少四步搜索算法的计算复杂度而不损失其精度。通过使用八位部分和和在所提出的方案中用于修改的绝对差(MSAD)标准的改进的绝对差(MSAD)标准的相应下限,丢弃大量候选运动向量,同时仍然保留四步搜索的最佳运动向量算法。以这种方式,在保持其精度的同时显着降低了四步搜索算法的计算要求。结果表明,单个指令上的字节型数据并行性多数据(SIMD)架构可以利用来进一步加速所提出的方案的执行。对各种基准视频序列进行方案的模拟,结果表明,新方案可以将四步搜索算法的计算复杂度降低20%至40%,而不损失其精度。

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