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Fast Intra-Mode and CU Size Decision for HEVC

机译:HEVC的快速内部模式和CU大小决策

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摘要

The latest video coding standard High Efficiency Video Coding (HEVC) achieves about a 50% bit-rate reduction compared with H.264/AVC under the same perceptual video quality. For intra coding, a coding unit (CU) is recursively divided into a quadtree-based structure from the largest CU to the smallest CU . Also, up to 35 intra-prediction modes are allowed. These two techniques improve the intra-coding performance significantly. However, the encoding complexity increases several times compared with H.264/AVC intra coding. In this paper, fast intra-mode decision and CU size decision are proposed to reduce the complexity of HEVC intra coding while maintaining the rate-distortion (RD) performance. For fast intra-mode decision, a gradient-based method is proposed to reduce the candidate modes for rough mode decision and RD optimization. For fast CU size decision, the homogenous CUs are early terminated first. Then two linear support vector machines that employ the depth difference and HAD cost ratio (and RD cost ratio) as features are proposed to perform the decisions of early CU split and early CU termination for the rest of the CUs. Experimental results show that the proposed fast intra-coding algorithm achieves about a 54% encoding time reduction on average with only a 0.7% BD-rate increase for the HEVC reference software HM 14.0 under all-intra configuration.
机译:在相同的感知视频质量下,最新的视频编码标准高效视频编码(HEVC)与H.264 / AVC相比可实现约50%的比特率降低。对于帧内编码,将编码单元(CU)从最大CU到最小CU递归地划分为基于四叉树的结构。另外,最多允许35种帧内预测模式。这两种技术显着提高了帧内编码性能。但是,与H.264 / AVC帧内编码相比,编码复杂度增加了数倍。本文提出了快速的帧内模式判决和CU大小判决,以降低HEVC帧内编码的复杂度,同时保持速率失真(RD)性能。对于快速的模式内决策,提出了一种基于梯度的方法来减少用于粗糙模式决策和RD优化的候选模式。为了快速确定CU大小,必须先提前终止同质CU。然后,提出了两个采用深度差和HAD成本比(和RD成本比)为特征的线性支持向量机,以执行其余CU的早期CU拆分和早期CU终止的决策。实验结果表明,对于全内配置的HEVC参考软件HM 14.0,所提出的快速帧内编码算法平均可减少约54%的编码时间,而BD速率仅增加0.7%。

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