CU depth-based ALF decision for fast HEVC encoding

Sang-hyo Park, Kiho Choi, E. Jang
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Abstract

In this paper, we propose a coding unit (CU) depth-based adaptive loop filter (ALF) decision method to reduce the encoder complexity. In high efficiency video coding (HEVC), ALF is designed based on Wiener filter to minimize the distortion between the original frame and the coded frame. In order to design the optimal filter for each CU, the filter design process is repeated 12 times per CU. The repetition of the filter design process occupies about 77 percent in the total ALF computation time, which substantially increases the encoder complexity. The proposed method simplifies the filter design with the CU depth-based ALF decision, which is based on the observation by exploiting ineffective computations. Experimental results show that the proposed method reduces the encoding time for the repetition of the filter design process by about 13 percent of that of the HEVC test model (i.e., HM 5.0) with 0.1 percent BD-rate increase.
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基于CU深度的ALF决策用于快速HEVC编码
本文提出了一种基于编码单元(CU)深度的自适应环路滤波器(ALF)决策方法,以降低编码器的复杂度。在高效视频编码(HEVC)中,ALF是基于维纳滤波器设计的,以最大限度地减少原始帧与编码帧之间的失真。为了设计每个CU的最优滤波器,每个CU的滤波器设计过程重复12次。滤波器设计过程的重复约占总ALF计算时间的77%,这大大增加了编码器的复杂性。该方法利用无效计算,利用基于观测的基于CU深度的ALF决策简化了滤波器设计。实验结果表明,该方法将滤波器设计过程的重复编码时间减少了HEVC测试模型(即HM 5.0)的13%左右,bd率提高了0.1%。
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