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首页> 外文期刊>Journal of Real-Time Image Processing >Fast CU size and prediction mode decision algorithm for HEVC based on direction variance
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Fast CU size and prediction mode decision algorithm for HEVC based on direction variance

机译:基于方向差异的HEVC快速CU尺寸和预测模式决策算法

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摘要

As the latest video coding standard, High Efficiency Video Coding (HEVC) achieves high coding performance, up to 50% bit rate savings compared with the previous standard, H.264/Advanced Video Coding while maintaining the same output video quality. Intra-coding in the HEVC significantly improves the compression efficiency, due to the various kinds of coding unit (CU) sizes, and high density of angular prediction modes. However, the improvement of the coding performance is obtained at the expense of the extraordinary computation complexity, which obstructs the usefulness of HEVC encoder for real-time applications. This paper presents a novel intra-encoding algorithm for HEVC, which is composed of an efficient CU partitioning technique and a fast intra-mode decision method based on direction variance. We utilize a preprocessing method in which the texture complexity and direction energy distribution along a special direction are extracted from a macroblock. According to the texture complexity obtained, an early CU splitting termination is proposed to decide whether a CU should be decomposed into four lower-dimensions CUs or not. Furthermore, a subset of prediction modes in accordance with the dominant direction energy distribution is chosen for the further rough mode decision and rate-distortion optimization process. The simulation results indicate the algorithm based on image understanding achieves better trade-off between rate-distortion performance and complexity reduction than the previous algorithms. Compared with the reference software HM16.7, the proposed algorithm can save 57% coding time on average, with a negligible bit rate increase of 0.65%, and quality losses lower 0.08 dB, respectively.
机译:作为最新的视频编码标准,高效视频编码(HEVC)实现了高编码性能,与以前的标准H.264 /高级视频编码相比,节省了高达50%的比特率,同时保持了相同的输出视频质量。由于各种编码单位(CU)大小以及角度预测模式的高密度,HEVC中的帧内编码可显着提高压缩效率。然而,编码性能的提高是以非凡的计算复杂性为代价的,这阻碍了HEVC编码器在实时应用中的实用性。本文提出了一种新型的HEVC帧内编码算法,该算法由高效的CU分割技术和基于方向方差的快速帧内模式决策方法组成。我们利用一种预处理方法,其中从宏块中提取纹理复杂度和沿特定方向的方向能量分布。根据获得的纹理复杂度,提出了早期的CU拆分终止,以决定是否应将CU分解为四个较低维度的CU。此外,根据主导方向能量分布的预测模式的子集被选择用于进一步的粗略模式决策和速率失真优化过程。仿真结果表明,与以前的算法相比,基于图像理解的算法在速率失真性能和复杂度降低之间取得了较好的折衷。与参考软件HM16.7相比,该算法平均可节省57%的编码时间,可忽略的比特率提高0.65%,质量损失分别降低0.08 dB。

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