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    • 2. 发明申请
    • VIDEO QUALITY MEASUREMENT
    • 视频质量测量
    • US20140286441A1
    • 2014-09-25
    • US14353351
    • 2011-11-24
    • Fan ZhangNing LiaoKai XieZhibo Chen
    • Fan ZhangNing LiaoKai XieZhibo Chen
    • H04N19/89
    • H04N19/00933H04N17/004H04N19/895
    • A particular implementation receives a bitstream and derives parameters from the bitstream. The parameters include quantization parameters, content unpredictability parameters, ratios of lost blocks, ratios of propagated blocks, error concealment distances, motion vectors, durations of freezing, and frame rates. Using these parameters, a compression distortion factor, a slicing distortion factor, and a freezing distortion factor are estimated respectively for distortions resulting from video compression, a slicing mode error concealment, and a freezing slicing mode error concealment. The distortion factors are then mapped to a composite video quality score. For applications with limited computational power, the estimation of distortion factors can be simplified. In particular, the compression distortion factor, the slicing distortion factor, and the freezing distortion factor can be predicted from quantization parameters, ratios of lost blocks, and durations of freezing, respectively.
    • 特定实现接收比特流并从比特流导出参数。 参数包括量化参数,内容不可预测性参数,丢失块的比率,传播块的比率,错误隐藏距离,运动向量,冻结持续时间和帧速率。 分别使用这些参数来估计压缩失真因子,切片失真因子和冻结失真因子,用于由视频压缩,切片模式错误隐藏和冷冻切片模式错误隐藏产生的失真。 然后将失真因子映射到复合视频质量得分。 对于具有有限计算能力的应用,可以简化失真因子的估计。 具体地,压缩失真因子,切片失真因子和冻结失真因子可以分别从量化参数,丢失块的比率和冻结时间预测。