ITU-T J 18-1988 CROSSTALK IN SOUND - PROGRAMME CIRCUITS SET UP ON CARRIER SYSTEMS《电缆电视系统的数字节目插入提示消息》.pdf
《ITU-T J 18-1988 CROSSTALK IN SOUND - PROGRAMME CIRCUITS SET UP ON CARRIER SYSTEMS《电缆电视系统的数字节目插入提示消息》.pdf》由会员分享,可在线阅读,更多相关《ITU-T J 18-1988 CROSSTALK IN SOUND - PROGRAMME CIRCUITS SET UP ON CARRIER SYSTEMS《电缆电视系统的数字节目插入提示消息》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 * TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU4%,%6)3)/.G0G0!.$G0G03/5.$G0G042!.3-)33)/.#2/334!,+G0G0).G0G03/5.$G0G13G002/2!-%#)2#5)43G0G03%4G0G050G0G0/.G0G0#!22)%2G0G03934%-3)45G134G0G0RecommendationG0G0* (Extract from the “LUEG0“OOK)NOTES1 ITU-T Recomm
2、endation J.18 was published in Fascicle III.6 of the Blue Book. This file is an extract from theBlue Book. While the presentation and layout of the text might be slightly different from the Blue Book version, thecontents of the file are identical to the Blue Book version and copyright conditions rem
3、ain unchanged (see below).2 In this Recommendation, the expression “Administration” is used for conciseness to indicate both atelecommunication administration and a recognized operating agency. ITU 1988, 1993All rights reserved. No part of this publication may be reproduced or utilized in any form o
4、r by any means, electronic ormechanical, including photocopying and microfilm, without permission in writing from the ITU.Fascicle III.6 - Rec. J.18 1Recommendation J.18Fascicle III.6 - Rec. J.18CROSSTALK IN SOUND-PROGRAMME CIRCUITSSET UP ON CARRIER SYSTEMS(Geneva, 1972; amended at Geneva, 1980)This
5、 Recommendation outlines the principles followed by the CCITT in determining what limits areappropriately set for sources of crosstalk affecting sound-programme circuits and other principles whichAdministrations might apply to ensure that the objectives for intelligible crosstalk in sound-programme
6、circuits areachieved in practice.1 The causes of crosstalk arising in the transmission parts of telecommunications networks occur in:a) frequency translating equipments at all levels, viz. audio, group, supergroup, and higher order translatingequipments;b) group, supergroup, etc., through-connection
7、 equipments (i.e. filter characteristics);c) transmission systems, both the line (including repeater) and station equipments.Different crosstalk mechanisms, e.g. inductive, capacitive and other couplings, intermodulation involvingcontinuous fixed-frequency tones such as pilots, etc., operate in thes
8、e equipments and systems. A particular channelmay thus be disturbed by intelligible crosstalk from a number of potential disturbing sources.However, because of the interconnections which occur at distribution points along the length of a sound-programme circuit, the same disturbing and disturbed sig
9、nals are rarely involved in more than one exposure.2 Only the more important crosstalk mechanisms are the subject of Recommendations (e.g. coaxial and balancedpair cable repeater section FEXT limits of the Series J Recommendations, Section 3); the limits are such that at least theobjectives for inte
10、lligible crosstalk ratio between telephone circuits (generally 65 dB, Recommendation G.151 1) maybe met. In some cases it is practicable to take into account the more stringent objectives for sound-programme circuits(Recommendations J.21, J.22 and J.23). Certain crosstalk mechanisms, because they ar
11、e not significant for telephony(e.g. near-end crosstalk limits for cable repeater sections), are not the subject of Recommendations; nevertheless, theymay be significant in relation to sound- programme circuit objectives.In principle, a probability of exposure can be attributed to each source of cro
12、sstalk, not all potential sourcesexerting their influence in every case. Given the respective probabilities and distributions, the risk of encountering lowvalues of crosstalk attenuation could be calculated.Without carrying out this analysis it is estimated that the risk of encountering adverse syst
13、ematic addition forsome sources is small and the allocation of the complete overall objective to a single source of crosstalk as theminimum value of crosstalk attenuation appears justifiable. For other sources, particularly where the equipmentsinvolved are specifically intended for sound-programme t
14、ransmission, it is appropriate to require some higherminimum attenuation values so as to allow for some adverse addition (Recommendation G.242 2) specifying through-connection filter discrimination requirements against out-of-band components in the band occupied by sound-programme circuits is an exa
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