针对高帧频数字图像序列的特点,提出了一种自适应近无损压缩算法,将连续的n帧分为一节,每节的第一帧进行基于帧内感兴趣区域(region of interest,ROI)的压缩,其他帧在帧间差分和阈值处理后进行游程编码.在第一帧内,利用形态Harr小波提...针对高帧频数字图像序列的特点,提出了一种自适应近无损压缩算法,将连续的n帧分为一节,每节的第一帧进行基于帧内感兴趣区域(region of interest,ROI)的压缩,其他帧在帧间差分和阈值处理后进行游程编码.在第一帧内,利用形态Harr小波提升和连通性分析检测出高频子带中的感兴趣区域.对感兴趣区域采用Rice无损熵编码,背景区域不编码.低频子带直接输出.实验结果表明,该算法在帧内能有效地划分感兴趣区域,压缩率在30以上,峰值信噪比在42 dB以上,目标无失真;帧间压缩的压缩率在7左右,背景区域有误差累积,但整体图像的峰值信噪比都在40 dB以上,目标无失真.该算法的计算复杂度较低,易于硬件实现,而且还具有自适应性和数据包独立的优点,适合于高帧频数字图像序列的实时压缩应用.展开更多
Multi-frame coding is supported by the emerging H.264. It is important for the enhancement of both coding efficiency and error robustness. In this paper, error resilient schemes for H.264 based on multi-frame were inv...Multi-frame coding is supported by the emerging H.264. It is important for the enhancement of both coding efficiency and error robustness. In this paper, error resilient schemes for H.264 based on multi-frame were investigated. Error robust H.264 video transmission schemes were introduced for the applications with and without a feedback channel. The experimental results demonstrate the effectiveness of the proposed schemes.展开更多
文摘针对高帧频数字图像序列的特点,提出了一种自适应近无损压缩算法,将连续的n帧分为一节,每节的第一帧进行基于帧内感兴趣区域(region of interest,ROI)的压缩,其他帧在帧间差分和阈值处理后进行游程编码.在第一帧内,利用形态Harr小波提升和连通性分析检测出高频子带中的感兴趣区域.对感兴趣区域采用Rice无损熵编码,背景区域不编码.低频子带直接输出.实验结果表明,该算法在帧内能有效地划分感兴趣区域,压缩率在30以上,峰值信噪比在42 dB以上,目标无失真;帧间压缩的压缩率在7左右,背景区域有误差累积,但整体图像的峰值信噪比都在40 dB以上,目标无失真.该算法的计算复杂度较低,易于硬件实现,而且还具有自适应性和数据包独立的优点,适合于高帧频数字图像序列的实时压缩应用.
文摘Multi-frame coding is supported by the emerging H.264. It is important for the enhancement of both coding efficiency and error robustness. In this paper, error resilient schemes for H.264 based on multi-frame were investigated. Error robust H.264 video transmission schemes were introduced for the applications with and without a feedback channel. The experimental results demonstrate the effectiveness of the proposed schemes.