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Enhanced Inter-Prediction Via Shifting Transformation in the H.264/AVC

机译:通过H.264 / AVC中的移位转换增强帧间预测

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Inter-prediction based on block-based motion estimation (ME) is used in most video codecs. The closer the prediction to the target block, the lower the residual, and thus more efficient compression can be achieved. In this paper, a new technique called enhanced inter-prediction (EIP) is proposed to improve the prediction candidates using an additional transformation acting while performing ME. A parametric transformation acts within the coding loop of each block to modify the prediction for each motion vector candidate. The EIP is validated in the particular case of a single-parameter shifting transformation. This paper presents an efficient algorithm to compute the best shift for each prediction candidate and a model to select the optimal prediction based on minimum cost integrating the approach with existing rate-distortion optimization techniques in the H.264/AVC video codec. Results show significant improvements with an average of 6% bit-rate reduction compared to the original H.264/AVC.
机译:大多数视频编解码器都使用基于块的运动估计(ME)的帧间预测。预测越接近目标块,残差越小,因此可以实现更有效的压缩。在本文中,提出了一种称为增强帧间预测(EIP)的新技术,以在执行ME时使用额外的变换动作来改善预测候选。参数变换在每个块的编码循环内起作用,以修改针对每个运动矢量候选的预测。在单参数平移转换的特殊情况下,可以验证EIP。本文提出了一种有效的算法,可为每个预测候选者计算最佳偏移,并提供一种基于最小成本的模型,以将该方法与H.264 / AVC视频编解码器中的现有速率失真优化技术相集成。结果显示,与原始的H.264 / AVC相比,平均比特率降低了6%,从而带来了显着的改进。

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