ITU-R BT 1729-2005 Common 16 9 4 3 aspect ratio digital television reference test pattern《通用16x9 4x3屏幕高宽比数字电视信号参考测试图》.pdf
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1、 Rec. ITU-R BT.1729 1 RECOMMENDATION ITU-R BT.1729 Common 16 9/4 3 aspect ratio digital television reference test pattern (Question ITU-R 97/6) (2005) Scope This Recommendation specifies a reference test pattern which may be used with any of Recommendations ITU-R BT.601, ITU-R BT.1358, ITU-R BT.1543
2、 or ITU-R BT.709. The pattern is designed for use in either 16 9 aspect ratio or 4 3 aspect ratio. The ITU Radiocommunication Assembly, considering a) that test patterns provide a convenient means of assessing chrominance and luminance performance in a television system; b) that although the require
3、ments for test patterns differ between standard-definition and high-definition television (HDTV) digital formats, it is possible to construct a single test signal which may be successfully used for all of these formats; c) that such a common test pattern may be useful when broadcasting in multiple f
4、ormats or when converting between formats; d) that the use of a common test pattern for all these formats can simplify test procedures and reduce the opportunity for misinterpretation of signal parameters and misalignment of systems, recommends 1 that the parameters defined in Annex 1 should be impl
5、emented and may be used for production and distribution purposes in standard-definition and HDTV digital formats. Annex 1 Common 16 9/4 3 aspect ratio digital television reference test pattern Normative references Recommendation ITU-R BS.645 Test signals and metering to be used on international soun
6、d programme connections. Recommendation ITU-R BT.471 Nomenclature and description of colour bar signals. Recommendation ITU-R BT.601 Studio encoding parameters of digital television for standard 4:3 and wide-screen 16:9 aspect ratios. 2 Rec. ITU-R BT.1729 Recommendation ITU-R BT.709 Parameter values
7、 for the HDTV standards for production and international programme exchange. Recommendation ITU-R BT.1358 Studio parameters of 625 and 525 line progessive scan television systems. Recommendation ITU-R BT.1379 Safe areas of wide-screen 16:9 and standard 4:3 aspect ratio productions to achieve a commo
8、n format during a transition period to wide-screen 16:9 broadcasting. Recommendation ITU-R BT.1543 1 280 720, 16 9 progressively-captured image format for production and international programme exchange in the 60 Hz environment. Purpose The reference test pattern has several purposes: quality contro
9、l of chrominance and luminance through the production chain; checking and adjusting the chrominance and luminance alignment of broadcast equipment, particularly video monitors; general testing of equipment for video production, emission and presentation; establish that a video circuit is active and
10、that associated audio is available; check for audio-video synchronization; check for correct connection of audio channels and correct audio levels. System types The pattern described in this Recommendation is intended for use with Recommendations ITU-R BT.601, ITU-R BT.709, ITU-R BT.1358, or ITU-R B
11、T.1543. These systems are distinguished by the proportions of their colour encoding (or “colorimetry”) and by their resolution. Zones of test pattern The zones of the multi-format test pattern are shown in Fig. 1. The test pattern is shown in detail with labels in Fig. 2. The test pattern is shown a
12、s it appears on screen in Fig. 3. An alternate format suited to 4 3 systems is shown in Fig. 4. Rec. ITU-R BT.1729 3 FIGURE 1 Zones of the multi-format test pattern FIGURE 2 Multi-format test pattern detail with labels 4 Rec. ITU-R BT.1729 FIGURE 3 Multi-format test pattern as seen on screen FIGURE
13、4 Multi-format test pattern alternate format for 4 3 systems Rec. ITU-R BT.1729 5 Usage of zones The overall aspect ratio of the test pattern is 16 9, comprising a centre zone of 4 3 aspect ratio and two side zones of equal size. For both the 16 9 zone and the 4 3 zone, the edges are castellated to
14、a thickness of 3.5% of the picture dimension. For the sides of the 4 3 zone, this corresponds to 2.5% of the full width of the pattern. The castellated edges are used to adjust overscan (see Recommendation ITU-R BT.1379). The width of the castellated areas is given in Table 1. TABLE 1 Castellation t
15、hickness (pixels) ZoneSystems Top, bottom Sides, 16 9 area(1)Sides, 4 3 area(1) 1 920 1 080 16 9 38 67 48 1 280 720 16 9 25 45 32 960 576 16 9 20 34 24 960 483 16 9 20 34 24 16 9 25 18 720 576 4 3 20 n/a 25 16 9 25 18 720 483 4 3 17 n/a 25 (1)The indicated values are ideal widths. In the case of 4:2
16、:2 implementations, even valued widths are recommended.NOTE 1 For a picture width of 720 pixels in 16:9 format, use horizontal resolution markers at position A. For a picture width of 960 pixels in 16:9 format or for a cropped picture of width 720 pixels in 4:3 format, use horizontal resolution mark
17、ers at position B. In the centre of the picture is a large circle containing Zones 2-13. This circle indicates the aspect ratio of the source signal. The diameter of the circle is 93% of the picture height. This circle is set against a crosshatched background of 50% grey (Zone 1). Zone 1 is divided
18、into a 10 10 grid. Zones 8-10, 14 and 15 contain frequency response bars. Associated with these bars are coloured markers to show the end of the pass-band (0.8 Nyquist frequency) and the Nyquist frequency of 483-, 576-, 720- and 1 080-line systems. Vertical frequency sweep may be expressed by either
19、 frame-based or field-based signals. Zone 2 is user-definable and is intended for text to identify the transmission channel or signal source. Zone 3 contains a white bar (100% luminance) as reference for the colour bars immediately below it. Zones 4 contains a set of 100/0/100/0 colour bars. The col
20、our bars may be used for checking cameras, codecs and monitors in any part of a production chain or they may be used for checking any other equipment used for digital emission and presentation. 6 Rec. ITU-R BT.1729 Zone 5 contains a luminance ramp. This may be used to check that a system is performi
21、ng correctly at all digital code values, including those beyond 0% and 100% luminance, but not including sync level. Zone 6 contains a horizontal B-Y colour difference signal ramp. Zone 7 contains a horizontal R-Y colour difference signal ramp. Zone 8 contains a linear horizontal luminance frequency
22、 sweep. The start of this sweep corresponds to 1.125 MHz 483/576-line systems and 2.32 MHz 720/1 080-line systems. The end of this sweep corresponds to 18 MHz in 483/576-line systems and 37.125 MHz in 720/1 080-line systems. Zone 9 contains a linear horizontal B-Y colour difference signal frequency
23、sweep. The start of this sweep corresponds to 0.5625 MHz in 483/576-line systems and 1.16 MHz in 720/1 080-line systems. The end of this sweep corresponds to 9 MHz in 483/576-line systems and 18.5625 MHz in 720/1 080-line systems. Zone 10 contains a linear horizontal R-Y colour difference signal fre
24、quency sweep. The start of this sweep corresponds to 0.5625 MHz in 483/576-line systems and 1.16 MHz in 720/1 080-line systems. The end of this sweep corresponds to 9 MHz in 483/576-line systems and 18.5625 MHz in 720/1 080-line systems. Zone 11 contains a horizontal luminance staircase in 10% steps
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