针对HEVC(High Efficiency Video Coding)编码器对图像组(Group of Picture,GOP)层采用平均分配的方式,在场景切换背景下,容易导致场景切换帧以及后续视频图像质量严重下降的问题,本文提出一种基于场景切换的码率控制算法:根据场景的复...针对HEVC(High Efficiency Video Coding)编码器对图像组(Group of Picture,GOP)层采用平均分配的方式,在场景切换背景下,容易导致场景切换帧以及后续视频图像质量严重下降的问题,本文提出一种基于场景切换的码率控制算法:根据场景的复杂度,重新分配GOP层目标比特,并且当检测到场景切换时,对模型参数,当前帧以及参考帧等做出适当调整。实验结果表明:相比HEVC自带的码率控制算法,该策略能有效降低场景切换带来的负面影响,使序列的平均峰值信噪比(PSNR)最高提升1.4 d B,并保持精确的输出码率。展开更多
Mode decision based on rate-distortion optimization algorithm brings high compression efficiency to H.264/AVC. However, heavy computation load is also added to the encoder at the same time. In order to reduce the comp...Mode decision based on rate-distortion optimization algorithm brings high compression efficiency to H.264/AVC. However, heavy computation load is also added to the encoder at the same time. In order to reduce the computation burden of mode decision, this paper presented a fast mode decision method based on mode information of the previously coded frame. Moreover, all coding modes were activated when scene change occurs and a scheme to detect scene change was proposed. The simulation results show that compared to the original encoder, the proposed method achieves a reduction of over 38% encoding time and keeps almost the same PSNR and bitrate for a wide range of quantization parameter.展开更多
文摘针对HEVC(High Efficiency Video Coding)编码器对图像组(Group of Picture,GOP)层采用平均分配的方式,在场景切换背景下,容易导致场景切换帧以及后续视频图像质量严重下降的问题,本文提出一种基于场景切换的码率控制算法:根据场景的复杂度,重新分配GOP层目标比特,并且当检测到场景切换时,对模型参数,当前帧以及参考帧等做出适当调整。实验结果表明:相比HEVC自带的码率控制算法,该策略能有效降低场景切换带来的负面影响,使序列的平均峰值信噪比(PSNR)最高提升1.4 d B,并保持精确的输出码率。
基金The National High Technology Research andDevelopment Program of China (863 Pro-gram) (No2002AA1Z1190)
文摘Mode decision based on rate-distortion optimization algorithm brings high compression efficiency to H.264/AVC. However, heavy computation load is also added to the encoder at the same time. In order to reduce the computation burden of mode decision, this paper presented a fast mode decision method based on mode information of the previously coded frame. Moreover, all coding modes were activated when scene change occurs and a scheme to detect scene change was proposed. The simulation results show that compared to the original encoder, the proposed method achieves a reduction of over 38% encoding time and keeps almost the same PSNR and bitrate for a wide range of quantization parameter.