ITU-T J 64-1986 Definitions of Parameters for Simplified Automatic Measurement of Television Insertion Test Signals Television and Sound Transmission《用于简化的自动测量的电视插入测试信号的参数的定义-电视及声音.pdf
《ITU-T J 64-1986 Definitions of Parameters for Simplified Automatic Measurement of Television Insertion Test Signals Television and Sound Transmission《用于简化的自动测量的电视插入测试信号的参数的定义-电视及声音.pdf》由会员分享,可在线阅读,更多相关《ITU-T J 64-1986 Definitions of Parameters for Simplified Automatic Measurement of Television Insertion Test Signals Television and Sound Transmission《用于简化的自动测量的电视插入测试信号的参数的定义-电视及声音.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUN CATION UN ION ITU-T TELECOMMUNICATION STAN DA RD I ZATI ON S ECTO R OF ITU J.64 (ex CMTT.569) (05/86) TELEVISION AND SOUND TRANSMISSION DEFINITIONS OF PARAMETERS FOR SIMPLIFIED AUTOMATIC MEASUREMENT OF TELEVISION INSERTION TEST SIGNALS ITU-T Recommendation J.64 (Formerly Rec
2、ommendation ITU-R CMTT.569) FOREWORD The ITU Telecommunication Standardization Sector (ITU-T) is a permanent organ of the International Telecom- munication Union. The ITU-T is responsible for studying technical, operating and tariff questions and issuing Recommendations on them with a view to standa
3、rdizing telecommunications on a worldwide basis. The World Telecommunication Standardization Conference (WTSC), which meets every four years, established the topics for study by the ITU-T Study Groups which, in their turn, produce Recommendations on these topics. ITU-T Recommendation 5.64 (formerly
4、Recommendation ITU-R CMTT.569) was elaborated by the former ITU-R Study Group CMTT. See Note 1 below. NOTES 1 As a consequence of a reform process within the International Telecommunication Union (ITU), the CCITT ceased to exist as of 28 February 1993. In its place, the ITU Telecommunication Standar
5、dization Sector (ITU-T) was created as of 1 March 1993. Similarly, in this reform process, the CCIR and the IFRB have been replaced by the Radiocommunication Sector (ITU-R). Conforming to a joint decision by the World Telecommunication Standardization Conference (Helsinki, March 1993) and the Radioc
6、ommunication Assembly (Geneva, November 1993), the ITU-R Study Group CMTT was transferred to ITU-T as Study Group 9, except for the satellite news gathering (SNG) study area which was transferred to ITU-R Study Group 4. 2 In this Recommendation, the expression “Administration” is used for concisenes
7、s to indicate both a telecommunication administration and a recognized operating agency. O ITU 1990 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writin
8、g from the ITU. Recommendation J.64l) DEFINITIONS OF PARAMETERS FOR SIMPLIFIED AUTOMATIC MEASUREMENT OF TELEVISION INSERTION TEST SIGNALS (1978; revised in 1982 and 1986) The CCIR, CONSIDERING (a) that Recommendation 567 is the basic reference which defines the parameters which are to be measured an
9、d the test signal elements and measuring methods which are to be used, in order to determine the performance of a television transmission circuit; (6) that Reports 628 and 411 describe various techniques for automatic measurement and monitoring of the performance of television chains which make use
10、of insertion test signals; (e) that operational measurements are commonly carried out using insertion test signals which are defined in Recommendation 473; (4 that Report 314 describes the allocation of lines in the field-blanking interval for special purposes; (e) that, although automatic measuring
11、 equipment exists that can make measurements in accordance with Recommendation 567, simplified automatic measuring equipment also exists that requires modifications of the measurement methods and definitions; (J3 that such simplified automatic measurement of insertion test signals suits the requirem
12、ents of operational staffs and makes the analysis of measurement results easier, UNANIMOUSLY RECOMMENDS, that, when simplified automatic measuring equipment is used to make measurements of an insertion test signal, and when a normalized form of presentation of the results is desired, the definitions
13、 used in quantifying the parameters of that signal should be those which are given in Annex I. ANNEX I 1. Introduction will depend upon the type of plant in use and the policy of the administrations. The need for each of the measurements described in this Recommendation (and possibly other measureme
14、nts) The test signals specified are those shown in Recommendation 473. The definitions assume that the performance of the measuring equipment employed is such that any harmonic components of the incoming signal, occurring above the nominal video band, will not give rise to measurement errors which e
15、xceed the specified accuracy of that equipment. The definitions also assume instrumentation that will substantially eliminate the effects of any noise present on the incoming signal from the measurement of any test signal parameter. The magnitude of distortions exhibited by signals which have passed
16、 through a non-linear transmission circuit tend to vary with average picture level. Therefore it may be desirable also, to measure automatically the value of Average Picture Level (APL) associated with any particular magnitude of distortion or error. Formerly Recommendation lTU-R CMTT.569. Recommend
17、ation 5.64 (05/86) 1 2. Definitions 2.1 Luminance bar amplitude The luminance bar amplitude is defined as the difference between the level corresponding to the mid-point of the bar (element B2) and the level corresponding to a point immediately following the composite pulse (element F). These points
18、 are shown as b2 and bl respectively in Figs. 1 and 2. It is to be expressed as a percentage of the nominal bar amplitude (0.7 V for 625-line signals, 0.714 V for 525-line signals). 2.2 Luminance bar amplitude error The luminance bar amplitude error is defined as the difference between the actual lu
19、minance bar amplitude and the nominal value expressed as a percentage of the nominal value (0.7 V for 625-line signals, 0.714 V for 525-line signals). 2.3 Bar tilt The luminance bar tilt is defined as the difference between the level of the luminance bar one microsecond after the half amplitude poin
20、t of its leading edge (point b3 in Figs. 1 and 2), and the level one microsecond before the half amplitude point of its trailing edge, (point b4 in Figs. 1 and 2) expressed as a percentage of the luminance bar amplitude. The sign of the difference is positive if b4 is higher than b3. Note. - The par
21、ameter bar tilt as defined above is a unique measurement by automatic devices of a specific form of line time waveform distortion, i.e. the difference in the level of the line bar at two specific reference points. This measurement is different to the measurements of line time waveform distortion des
22、cribed in Recommendation 567 (3 C.3.5.1.3 and Annex III to Part C, 3 2.1) where the maximum difference in level at any point between defined reference points is measured. 2.4 Base-line distortion The base-line distortion is defined as the difference between the levels of the signal at point b7, whic
23、h is located after the mid-amplitude point of the trailing edge of the bar (element B2) at a distance of 400 ns for 625-line systems and 500 ns for 525-line systems (see Figs. 1 and 2), and at a reference point bl located before the beginning of the staircase in line 17 (see also Figs. 1 and 2). The
24、 base-line distortion is expressed as a percentage of the luminance bar amplitude. It is to be measured after the bandwidth of the signal has been limited (see Note). The sign of the difference is positive if the signal level at point b7 is higher than the level of reference point bl. Note. - Limita
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