IEC 61966-2-1-1999 Multimedia systems and equipment - Colour measurement and management - Part 2-1 Colour management - Default RGB colour space - sRGB《多媒体系统与设备.色彩测量和管理.第2-1部分 色彩管理.缺省RGB色彩空间.sRGB》.pdf
《IEC 61966-2-1-1999 Multimedia systems and equipment - Colour measurement and management - Part 2-1 Colour management - Default RGB colour space - sRGB《多媒体系统与设备.色彩测量和管理.第2-1部分 色彩管理.缺省RGB色彩空间.sRGB》.pdf》由会员分享,可在线阅读,更多相关《IEC 61966-2-1-1999 Multimedia systems and equipment - Colour measurement and management - Part 2-1 Colour management - Default RGB colour space - sRGB《多媒体系统与设备.色彩测量和管理.第2-1部分 色彩管理.缺省RGB色彩空间.sRGB》.pdf(76页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL STANDARD I EC 61 966-2-1 1999 AMENDMENT 1 2003-01 Amendment 1 Multimedia systems and equipment - Colour measurement and management - Part 2-1 : Colour management - Default RGB colour space - sRGB Amendement 7 Mesure et gestion de la couleur dans les systmes et appareils multimdia - Par
2、tie 2-7: Gestion de la couleur - Espace chromatique RVB par dfaut - sRVB O IEC 2003 Droits de reproduction rservs - Copyright - all rights reserved International Electrotechnical Commission, 3, rue de Varemb, PO Box 131, CH-I211 Geneva 20, Switzerland Telephone: +41 22 919 02 11 Telefax: +41 22 919
3、03 O0 E-mail: inmailiec.ch Web: www.iec.ch PRICECODE H For price, see current catalogue Commission Electrotechnique Internationale International Electrotechnical Commission MeXayHaPOflHaR 3neKTpOTeXHWIeCKaR KOMMCCMR -2- 61966-2-1 Amend. 1 O IEC:2003(E) 1001555AIFDIS FOREWORD 1001625lRVD This amendme
4、nt has been prepared by Technical Area 2: Colour measurement and management, of IEC technical committee 100: Audio, video and multimedia systems and equipment. The text of this amendment is based on the following documents: I FDIS I Report onvoting I Full information on the voting for the approval o
5、f this amendment can be found in the report on voting indicated in the above table. Page 5 CONTENTS Add the titles of Annexes F, G and H as follows: Annex F (normative) Default YCC encoding transformation for a sadard luma-chroma- chroma colour space: sYCC Annex G (informative) Extended gamut encodi
6、ng for sRGB: bg-sRGB and its YCC transformation: bg-sYCC Annex H (informative) CIELAB (L*a*b*) transformation Page 49 Add the following new Annexes F, G and H after Annex E: 61966-2-1 Amend. 1 O IEC:2003(E) -3- Annex F (normative) Default YCC encoding transformation for a standard luma-chroma-chroma
7、 colour space: sYCC The method of digitization in this annex is designed to complement current sRGB-based colour management strategies by explicitly standardizing a default transformation between sRGB and a standard luma-chroma-chroma colour space (sYCC). Application and hardware developers who want
8、 to support various colour compression schemes based on luma-chroma-chroma spaces can utilize this annex. Since this sYCC colour space is a simple extension of the sRGB colour space as defined in this standard, the same reference conditions are shared by both colour spaces. F.l General The encoding
9、transformations between sYCC values and CIE 1931 XYZ values provide unambiguous methods to represent optimum image colorimetry when viewed on a hypothetical reference display that is capable of producing all colours defined by sYCC encoding, in the reference viewing conditions by the reference obser
10、ver. Non-linear floating point sRGB represent the appearance of the image as displayed on the reference display in the reference viewing condition described in Clause 4 of this standard. F.2 Transformation from sYCC values ( Ysycc, Cbsycc, Crsycc) to CIE 1931 XYZ values The non-linear sYC,C, values
11、can be computed using the following relationship: For 24-bit encoding (8-bit/channel), WDC = 255, KDC = O, Range = 255, and Offset = 128, and the relationship is defined as; 24-bit encoding (8-bitkhannel) shall be the default sYCC encoding bit depth. Other bit depths may be unsupported for general u
12、se. Where other N-bitkhanne1 encoding is supported (N S), the relationship is defined as; -4- 61966-2-1 Amend. 1 O IEC:2003(E) For 24-bit encoding ( 1,000 O 0,000 O 1,402 O Y Ys, = round(WDC - KDC)x YS, + KDC CbSycc = round (Range x Cb SYCC(N) = round 2N - i)x JYCc 1 Cbsycc(N) = r0und(2 - 1)x Cb 30-
13、bit encoding (10-bitkhannel) shall be the default bg-sRGB encoding bit depth. Other bit depths may be unsupported in general use. Where other N-bitkhanne1 encoding is supported (N lo), the relationship is defined as; (G.2) 61966-2-1 Amend. 1 O IEC:2003(E) -9- The non-linear sRGB values are then tran
14、sformed to CIE 1931 XYZ values as follows: + 0,0557 13 RGB = 1,055 For 24-bit encoding ( For 30-bit encoding (10-bitkhannel), WDC = 894, KDC = 384, and the relationship is defined as; (G.12) 61966-2-1 Amend. 1 O IEC:2003(E) - 11 - For 30-bit encoding, the bg-sRGB(,o) values shall be limited to a ran
15、ge from O to 1023 after equation G.12. 30-bit encoding (10-bitkhannel) shall be the default bg-sRGB encoding bit depth. Other bit depths may be unsupported in general use. Where other N-bitchannel encoding is supported (N lo), the relationship is defined as; (G. 1 2) For N-bitchannel encoding (N lo)
16、, the bg-SRGB(N) values shall be limited to a range from O to 2N - 1 after equation G.12. G.4 Transformation between SRG6 8-bit Values ( R,RGB(), GsG(8), Bs(8) and bg-sRGB Ombit values(Rbg-sRGB(lO) Gbg-sRGB(lO)l Bbg-sRGB(lO) The transformation between sRGB 8-bit values and bg-sRGB 10-bit values can
17、be computed using following relationship After equation G.14, the sRGB(,) values shall be limited to a range from O to 255. For the case of N bit encoding; (G.13) (G. 14) (G. 1 3) (G.14) After equation G.14, the sRGB(,) values is limited to a range from 0 to 2N-1 - 12- 61966-2-1 Amend. 1 O IEC:2003(
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