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    • 5. 发明授权
    • Mapping between linear luminance values and luma codes
    • US10419689B2
    • 2019-09-17
    • US16206525
    • 2018-11-30
    • KONINKLIJKE PHILIPS N.V.
    • Renatus Josephus Van Der Vleuten
    • H04N5/235H04N19/186H04N5/202H04N9/804
    • To enable better encoding of the currently starting to appear high dynamic range images for use in full high dynamic range technical systems (containing an HDR display, and e.g. in an HDR grading application), we invented a method of constructing a code allocation function for allocating pixel colors having pixel luminances to codes encoding such pixel luminances, in which the step of determining the code allocation function to be applied to at least one color coordinate of the pixel to obtain a code value, comprises constructing that function out of at least two partial functions, and similar methods at a receiving side, and apparatuses, and signals for communicating between the two sites. This method allows—in line with applicant's technical approach that HDR images should actually be communicated as a spectrum of differently regraded different dynamic range images of the same scene, e.g. a master HDR image and another image of the same HDR scene encoded with a different dynamic range and peak brightness than the master HDR image, and one of these images should be communicated to receivers together with luminance mapping functions co-communicated in metadata allowing the calculation at the receiving side of the non-transmitted different dynamic range image—a better application of dynamically per scene optimizable luminance mapping functions.
    • 7. 发明授权
    • Simple but versatile dynamic range coding
    • US10217198B2
    • 2019-02-26
    • US15538808
    • 2015-12-22
    • KONINKLIJKE PHILIPS N.V.
    • Renatus Josephus Van Der VleutenJeroen Hubert Christoffel Jacobus StessenMark Jozef Willem Mertens
    • H04N5/235G06T5/00H04N9/69H04N19/182H04N19/98
    • For obtaining an good yet easy to use luminance dynamic range conversion, we describe an image color processing apparatus (200) arranged to transform an input color (R,G,B) of a pixel of an input image (Im_in) having a first luminance dynamic range into an output color (Rs, Gs, Bs) of a pixel of an output image (Im_res) having a second luminance dynamic range, which first and second dynamic ranges differ in extent by at least a multiplicative factor 2, comprising: a maximum determining unit (101) arranged to calculate a maximum (M) of color components of the input color, the color components at least comprising a red, green and blue component;—a uniformization unit (201) arranged to apply a function (FP) to the maximum (M) as input, which function has a logarithmic shape and was predetermined to be of a fixed shape enabling to transform a linear input to a more perceptually uniform output variable (u); a function application unit (203) arranged to receive a functional shape of a function, which was specified previously by a human color grader, and apply the function to the uniform output variable (u), yielding a transformed uniform value (TU); a linearization unit (204) arranged to transform the transformed uniform value (TU) to a linear domain value (LU); a multiplication factor determination unit (205) arranged to determine a multiplication factor (a) being equal to the linear domain value (LU) divided by the maximum (M); and a multiplier (104) arranged to multiply at least three linear color components (R,G,B) by the multiplication factor (a), yielding the output color.
    • 9. 发明授权
    • Luminance changing image processing with color constraints
    • 亮度随着颜色约束而改变图像处理
    • US09230509B2
    • 2016-01-05
    • US14402135
    • 2013-09-17
    • KONINKLIJKE PHILIPS N.V.
    • Renatus Josephus Van Der Vleuten
    • G06K9/00G09G5/02H04N1/60G06T3/00G06T5/00
    • G09G5/02G06T3/0056G06T5/002G09G2320/0271G09G2320/066G09G2360/16H04N1/6027
    • To be able to do good color mapping between color encodings for gamuts with considerably different luminance dynamic range while not introducing significant color errors, we describe an image color processing apparatus (201) arranged to transform an input color (L,x,y) of a pixel specified in a color representation corresponding to a first luminance dynamic range into an output color (L*,x,y) of a pixel specified in a color representation corresponding to a second luminance dynamic range, which first and second dynamic ranges differ in extent by at least a multiplicative factor 1.5, comprising a tone mapping deformation unit (203) arranged to determine on the basis of an input tone mapping (301) and a quantity linearly related to the luminance (L) of the input color, an adjusted output luminance (L*, 309), wherein the determining is arranged so that the adjusted output luminance (L*, 309) obtained by applying the input tone mapping to the input luminance (L) of all possible input luminances in its extent of valid values [0,1] giving the highest output (L*,L_HDR), is not higher than a maximum luminance Lmax(x,y) which for the chromatic coordinates (x,y) of the input color is maximally achievable in the gamut corresponding to the second luminance dynamic range for those chromatic coordinates (x,y).
    • 为了能够在颜色编码与亮度动态范围相当不同的颜色编码之间进行良好的颜色映射,同时不引入显着的颜色误差,我们描述了一种图像颜色处理装置(201),其被设置为将输入颜色(L,x,y) 将与第一亮度动态范围对应的颜色表示中指定的像素指定为对应于第二亮度动态范围的颜色表示中指定的像素的输出颜色(L *,x,y),第一和第二动态范围在 至少乘以一个乘法因子1.5,包括一个色调映射变形单元(203),它被配置为基于输入色调映射(301)和与输入颜色的亮度(L)线性相关的量来确定, 输出亮度(L *,309),其中所述确定被布置成使得通过将所输入的色调映射到所有可能的输入亮度的输入亮度(L)而获得的经调整的输出亮度(L *,309) 给出最高输出(L *,L_HDR)的有效值[0,1]程度的肛门不高于输入颜色的色坐标(x,y)的最大亮度Lmax(x,y) 在对应于这些色坐标(x,y)的第二亮度动态范围的色域中最大可实现。