In-loop filters have been comprehensively explored during the development of video coding standards due to their remarkable noise-reduction capabilities.In the early stage of video coding,in-loop filters,such as the d...In-loop filters have been comprehensively explored during the development of video coding standards due to their remarkable noise-reduction capabilities.In the early stage of video coding,in-loop filters,such as the deblocking filter,sample adaptive offset,and adaptive loop filter,were performed separately for each component.Recently,cross-component filters have been studied to improve chroma fidelity by exploiting correlations between the luma and chroma channels.This paper introduces the cross-component filters used in the state-ofthe-art video coding standards,including the cross-component adaptive loop filter and cross-component sample adaptive offset.Crosscomponent filters aim to reduce compression artifacts based on the correlation between different components and provide more accurate pixel reconstruction values.We present their origin,development,and status in the current video coding standards.Finally,we conduct discussions on the further evolution of cross-component filters.展开更多
适用于高效视频编码(High Efficiency Video Coding,HEVC)视频的数据隐藏方案相对较少,现有方案大多无法充分利用所有类型视频帧,并且存在嵌入容量不高或载密视频流比特率增加较大等问题.文中提出了一种HEVC视频数据隐藏方法,利用HEVC...适用于高效视频编码(High Efficiency Video Coding,HEVC)视频的数据隐藏方案相对较少,现有方案大多无法充分利用所有类型视频帧,并且存在嵌入容量不高或载密视频流比特率增加较大等问题.文中提出了一种HEVC视频数据隐藏方法,利用HEVC视频新的编码元素实现在不同类型视频帧中的数据嵌入.该方法主要包括三种嵌入模式:修改编码树单元的样值自适应补偿值(Sample Adaptive Offset,SAO)、交换16×16、8×8和4×4编码单元中的残差系数以及改变4×4变换跳过块的符号位.实验结果表明,所提出的方法具有较好的嵌入不可感知性和较高的嵌入容量,并对视频流比特率影响很小.与最近提出的方案相比,载密视频具有更高的视觉质量和更小的比特率增加.展开更多
为解决高性能视频编码标准H.265/HEVC中引入的样点自适应补偿技术的计算复杂度极高导致严重影响编码效率的问题,提出一种HEVC样点自适应补偿快速算法.首先根据编码单元(coding unit,CU)的划分深度确定亮度树形编码块(coding tree block,...为解决高性能视频编码标准H.265/HEVC中引入的样点自适应补偿技术的计算复杂度极高导致严重影响编码效率的问题,提出一种HEVC样点自适应补偿快速算法.首先根据编码单元(coding unit,CU)的划分深度确定亮度树形编码块(coding tree block,CTB)中需要提取边缘方向的区域,然后利用边缘方向提取算法获得亮度CTB的边缘方向列表,并根据此列表减少亮度CTB在模式判别过程中遍历的模式数量,最后利用亮度和色度CTB之间的相关性进一步简化色度CTB的模式判别过程.实验结果表明,在性能损失较小的情况下,本算法可以在全I帧(AI)、随机访问(RA)、低延时B帧(LB)、低延时P帧(LP)四种配置下分别节省31.75%、56.85%、52.81%、51.51%的样点自适应补偿编码时间.展开更多
基金supported in part by National Science Foundation of China under Grant No.62031013PCL-CMCC Foundation for Science and Innovation under Grant No.2024ZY1C0040+1 种基金New Cornerstone Science Foundation for the Xplorer PrizeHigh performance Computing Platform of Peking University。
文摘In-loop filters have been comprehensively explored during the development of video coding standards due to their remarkable noise-reduction capabilities.In the early stage of video coding,in-loop filters,such as the deblocking filter,sample adaptive offset,and adaptive loop filter,were performed separately for each component.Recently,cross-component filters have been studied to improve chroma fidelity by exploiting correlations between the luma and chroma channels.This paper introduces the cross-component filters used in the state-ofthe-art video coding standards,including the cross-component adaptive loop filter and cross-component sample adaptive offset.Crosscomponent filters aim to reduce compression artifacts based on the correlation between different components and provide more accurate pixel reconstruction values.We present their origin,development,and status in the current video coding standards.Finally,we conduct discussions on the further evolution of cross-component filters.
文摘为解决高性能视频编码标准H.265/HEVC中引入的样点自适应补偿技术的计算复杂度极高导致严重影响编码效率的问题,提出一种HEVC样点自适应补偿快速算法.首先根据编码单元(coding unit,CU)的划分深度确定亮度树形编码块(coding tree block,CTB)中需要提取边缘方向的区域,然后利用边缘方向提取算法获得亮度CTB的边缘方向列表,并根据此列表减少亮度CTB在模式判别过程中遍历的模式数量,最后利用亮度和色度CTB之间的相关性进一步简化色度CTB的模式判别过程.实验结果表明,在性能损失较小的情况下,本算法可以在全I帧(AI)、随机访问(RA)、低延时B帧(LB)、低延时P帧(LP)四种配置下分别节省31.75%、56.85%、52.81%、51.51%的样点自适应补偿编码时间.