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    • 83. 发明申请
    • CODING OF HIGH DYNAMIC RANGE VIDEO USING SEGMENT-BASED RESHAPING
    • 高分辨率动态范围视频采用分段重构的编码
    • WO2018049335A1
    • 2018-03-15
    • PCT/US2017/050980
    • 2017-09-11
    • DOLBY LABORATORIES LICENSING CORPORATION
    • KADU, HarshadCHEN, QianSU, Guan-Ming
    • H04N19/117H04N19/124H04N19/136H04N19/182H04N19/177H04N19/98
    • Given HDR and SDR video inputs representing the same content, segment-based methods are described to generate a backward-compatible reshaped SDR video which preserves the artistic intent or "look" of the inputs and satisfies other coding requirements. For each frame in a segment, reshaping functions are generated based on a support frames set determined based on a sliding window of frames that is adjusted based on scene cuts in the segment and which may include frames from both the current segment and neighboring segments. For luma reshaping, a mapping that preserves the cumulative density function of the luminance histogram values in the EDR and SDR inputs is combined with a minimum codeword allocation derived based on the EDR signal and the support frame set. For chroma reshaping, methods for segment-based forward and backward reshaping using multivariate, multi-regression models are also presented.
    • 给定表示相同内容的HDR和SDR视频输入,描述基于片段的方法以生成向后兼容的重新塑造的SDR视频,其保留艺术意图或“外观”。 的输入并满足其他编码要求。 对于片段中的每个帧,基于基于根据片段中的场景片段调整并且可以包括来自当前片段和邻近片段的帧的帧的滑动窗口确定的支持帧集合来生成重整形函数。 对于亮度整形,保存EDR和SDR输入中的亮度直方图值的累积密度函数的映射与基于EDR信号和支持帧集合导出的最小码字分配相结合。 对于色度重塑,还提出了使用多元多回归模型进行基于片段的前向和后向重塑的方法。
    • 84. 发明申请
    • CHROMA RESHAPING FOR HIGH DYNAMIC RANGE IMAGES
    • 对高动态范围图像进行色度恢复
    • WO2017201139A1
    • 2017-11-23
    • PCT/US2017/033056
    • 2017-05-17
    • DOLBY LABORATORIES LICENSING CORPORATION
    • SONG, QingSU, Guan-MingCHEN, QianCHEN, Tao
    • H04N19/30H04N19/124H04N19/85H04N19/98
    • H04N19/30H04N19/124H04N19/85H04N19/98
    • Methods and systems for adaptive chroma reshaping are discussed. Given an input image, a luma-reshaped image is first generated based on its luma component. For each chroma component of the input image, the range of the pixel values in the luma reshaped image is divided into bins, and for each bin a maximal scale factor is generated based on the chroma pixel values in the input image corresponding to the pixels of the luma reshaped image in the bin. A forward reshaping function is generated based on a reference reshaped function and the maximal scale factors, and reshaped chroma pixel values for the chroma component are generated based on the forward reshaping function and the corresponding pixel values in the luma reshaped image. Implementations options using look-up tables for mobile platforms with limited computational resources are also described.
    • 讨论了用于自适应色度再整形的方法和系统。 给定输入图像,首先根据亮度分量生成亮度重新变形的图像。 对于输入图像的每个色度分量,将亮度重新变形图像中的像素值的范围划分为区间,并且对于每个区间,基于输入图像中对应于像素的色度像素值生成最大比例因子 亮度在bin中重新塑造图像。 基于参考整形函数和最大比例因子来生成正向整形函数,并且基于正向整形函数和亮度整形图像中的对应像素值来生成色度分量的整形色度像素值。

    • 88. 发明申请
    • A METHOD AND APPARATUS OF ENCODING AND DECODING A COLOR PICTURE
    • 编码和解码彩色图片的方法和装置
    • WO2016120208A1
    • 2016-08-04
    • PCT/EP2016/051448
    • 2016-01-25
    • THOMSON LICENSING
    • LASSERRE, SebastienLELEANNEC, FabriceBORDES, Philippe
    • H04N19/98H04N19/36H04N19/117H04N19/136H04N19/186H04N19/80
    • H04N19/36H04N19/117H04N19/136H04N19/186H04N19/44H04N19/80
    • The present disclosure generally relates to a method and device of encoding a color picture having color components (Ec), characterized in that it comprises: - obtaining (130) a luminance component (L) comprising: - obtaining (120) a modulation value (Ba) from the luminance (Y) of the color picture; - obtaining a scaled luminance by dividing the luminance (Y) of the color picture by said modulation value (Ba); - obtaining the luminance component (L) by applying a non-linear function on said scaled luminance in order that the dynamic of said luminance component (L) is reduced compared to the dynamic of said scaled luminance; - obtaining two chrominance components (C1, C2) comprising: - obtaining a factor (r(L(i)) that depends on the value of the pixel (i) of said luminance component (L(i)) and the luminance value (Y(i)) of the co-located pixel (i) in the color picture; - obtaining (150) at least one intermediate color component (E'c) by multiplying each color component (Ec) by said factor (r(L(i)); and - obtaining (170) said two chrominance components (C1, C2) from said at least one intermediate color components (E'c); and - encoding (180) said luminance (L) and two chrominance components (C1, C2).
    • 本公开总体上涉及对具有颜色分量(Ec)的彩色图像进行编码的方法和装置,其特征在于,其包括: - 获得(130)亮度分量(L),包括:获得(120)调制值 Ba)从彩色图像的亮度(Y) - 通过将彩色图像的亮度(Y)除以所述调制值(Ba)来获得缩放亮度; - 通过对所述缩放亮度施加非线性函数来获得亮度分量(L),以便与所述缩放亮度的动态相比,所述亮度分量(L)的动态减小; - 获得两个色度分量(C1,C2),包括: - 获得取决于所述亮度分量(L(i))的像素(i)的值和亮度值( (i)); - 通过将每个颜色分量(Ec)乘以所述因子(r(L))来获得(150)至少一个中间颜色分量(E'c) (i));以及 - 从所述至少一个中间颜色分量(E'c)获得(170)所述两个色度分量(C1,C2);以及 - 编码(180)所述亮度(L)和两个色度分量 C1,C2)。