ITU-T V 37-1988 SYNCHRONOUS DATA TRANSMISSION AT A DATA SIGNALLING RATE HIGHER THAN 72 kbit s USING 60-108 kHz GROUP BAND CIRCUITS《使用60~108KHz基群电路以高于72kbit s的数据传信速率进行同步数据 -电话网络上的数据.pdf
《ITU-T V 37-1988 SYNCHRONOUS DATA TRANSMISSION AT A DATA SIGNALLING RATE HIGHER THAN 72 kbit s USING 60-108 kHz GROUP BAND CIRCUITS《使用60~108KHz基群电路以高于72kbit s的数据传信速率进行同步数据 -电话网络上的数据.pdf》由会员分享,可在线阅读,更多相关《ITU-T V 37-1988 SYNCHRONOUS DATA TRANSMISSION AT A DATA SIGNALLING RATE HIGHER THAN 72 kbit s USING 60-108 kHz GROUP BAND CIRCUITS《使用60~108KHz基群电路以高于72kbit s的数据传信速率进行同步数据 -电话网络上的数据.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 6 TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU$!4!G0G0#/-5.)#!4)/.G0G0/6%2G0G04(%G0G04%,%0(/.%.%47/2+39.#(2/./53G0G0$!4!G0G042!.3-)33)/.!4G0G0!G0G0$!4!G0G03).!,).G0G02!4%G0G0()(%24(!.G0G0 G0KBIT SG0G053).G0G0 G13 G0K(ZG0G02/50“!.$G0G0#)2#5)43)45G134G0G0R
2、ecommendationG0G06 (Extract from the “LUEG0“OOK)NOTES1 ITU-T Recommendation V.37 was published in Fascicle VIII.1 of the Blue Book. This file is an extract fromthe Blue Book. While the presentation and layout of the text might be slightly different from the Blue Book version, thecontents of the file
3、 are identical to the Blue Book version and copyright conditions remain 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
4、part of this publication may be reproduced or utilized in any form or by any means, electronic ormechanical, including photocopying and microfilm, without permission in writing from the ITU.Fascicle VIII.1 - Rec. V.37 1Recommendation V.37Fascicle VIII.1 - Rec. V.37SYNCHRONOUS DATA TRANSMISSION AT A
5、DATA SIGNALLING RATEHIGHER THAN 72 kbit/s USING 60-108 kHz GROUP BAND CIRCUITS(Geneva, 1980; amended at Malaga-Torremolinos, 1984 and at Melbourne, 1988)1 IntroductionOn leased circuits, considering that there exist and will come into being other modems with features designedto meet the requirements
6、 of Administrations and users, this Recommendation in no way restricts the use of any othermodems.The only group reference pilot frequency which can be used in conjunction with this modem is 104.08 kHz.The modem is intended to be used on group band circuits not necessarily conforming to 1.Principal
7、characteristics:a) transmission of any type of high-speed synchronous data in duplex constant carrier mode on 4-wire(60-108 kHz) group band circuits;b) primary data signalling rates up to 144 kbit/s;c) inclusion of an automatic adaptive equalizer;d) class IV partial response pulse amplitude single s
8、ideband signalling and modulation;e) optional inclusion of an overhead-free multiplexer combining existing data signalling rates;f) optional voice channel.2 Data signalling rates2.1 The recommended synchronous data signalling rates are 96 kbit/s, 112 kbit/s, 128 kbit/s and 144 kbit/s. Forsome applic
9、ations with agreement from the Administration, data signalling rates up to 168 kbit/s are applicable. (Seethe Note to 7.)2.2 The permitted tolerance for all data signalling rates is 5 10-5.3 Scrambler/descramblerIn order to be bit sequence independent, to avoid high amplitude spectral components on
10、the line, and to allowthe automatic equalizer to remain converged, the data should be scrambled and descrambled by means of the logicalarrangements described in Appendix I.4 Encoding methodThe binary bit stream A, delivered by the scrambler, to be transmitted is divided into consecutive groups of2 b
11、its Aland A2(dibits), Albeing the first in time delivered by the scrambler.An amplitude level B is assigned to each dibit (A) as shown in Table 1/V.37.2 Fascicle VIII.1 - Rec. V.37TABLE 1/V.37A1A2Equivalent B amplitude level001101100+1+2+3A pre-encoder circuit converts the stream B into another quat
12、ernary stream C which conforms to the relation:5 Baseband signal shapingThe equivalent baseband signal shaping process is based upon the binary coded partial response pulse, oftenreferred to as class IV, whose time and spectral function are defined by:andrespectively, where 1/T denotes the modulatio
13、n rate.The reference to equivalent baseband signals recognizes that the modem implementation may be such that thebinary signal at the input and output of the modem is converted to and from the line signal without appearing as anactual baseband signal.The baseband signal formed by the processes descr
14、ibed above will present 7 levels (see Table 2/V.37).The baseband signal shaping is performed in the transmitter,Fascicle VIII.1 - Rec. V.37 3TABLE 2/V.37LevelBit valueA1A2+3+2+10-1-2-3110011001100116 Line signal in the 60-108 kHz band (at the line output of the modem)6.1 In the 60-108 kHz band, the
15、line signal should correspond to a single sideband signal with its carrierfrequency pilot and timing pilot at frequencies as specified in Table 3/V.37.6.2 The amplitude of the theoretical line signal spectrum, corresponding to a quaternary symbol (+1) appearing atthe output of the encoder, is sinuso
16、idal. The zeros and maxima of the theoretical line spectrum are shown inTable 3/V.37.TABLE 3/V.37Data rate(kbit/s)Zeros at(kHz)Maxima at(KHz)Pilot carrier frequency Timing pilot frequency14412811296168(optional)64 and 10068 and 10072 and 10076 and 10062 and 1048284868883100 kHz100 kHz100 kHz100 kHz1
17、04 kHz64 kHz68 kHz72 kHz76 kHz62 kHz6.3 In the 60-108 kHz band, amplitude distortion of the real spectrum relative to the theoretical spectrum asdefined under 6.2 above is not to exceed 1 dB; the group-delay distortion is not to exceed 15 s. These tworequirements are to be met for each frequency ban
18、d centred on one of the maxima mentioned in 6.2 and whose widthis equal to 80% of the frequency band used.6.4 The nominal level of the line data signal should be -6 dBm0. The actual level should be within 1 dB of thenominal level.6.5 A pilot carrier at the same frequency as the modulated carrier (10
19、0 kHz 2 Hz) at the transmitter and with alevel of -9 0.5 dB relative to the actual level mentioned under 6.4 above, should be added to the line signal. Therelative phase between the modulated carrier and the pilot carrier at the transmitter should be time invariant.Note - For the optional data signa
20、lling rate of 168 kbit/s, the pilot carrier should be 104 kHz 2 Hz.6.6 A timing pilot at a frequency difference from the carrier equal to half the modulation rate at the transmitterwith a level of -12 0.5 dB relative to the actual level mentioned under 6.4 above, should be added to the line signal.T
21、he relationship between the timing pilot and the pilot carrier should remain time invariant at the transmitter.4 Fascicle VIII.1 - Rec. V.377 Group reference pilot7.1 Provision should be made for facilitating the injection of a group reference pilot of 104.08 kHz from anexternal source.7.2 The prote
22、ction of the group reference pilot should conform to Recommendation H.52 2.Note - Group reference pilot must be removed from the channel for operation at 168 kbit/s.8 Optional voice channelThe service speech channel may be an integral part of the application of this system and is used on an optional
23、basis. The channel corresponds to channel 1 of a 12 channel SSB-AM system in the 104-108 kHz band (virtual carrierat 108 kHz). It can transmit continuous voice at a mean level of maximum -15 dBm0 or pulsed signalling tonesaccording to the individual specifications.To avoid overloading of the system
24、by peak signals, a limiter shall be used with cut-off levels above +3 dBm0.To avoid stability problems, the channel shall be connected to 4-wire equipment only.The transmit filter shall be such that any frequency applied to the transmit input terminals at a level of-15 dBm0 will not cause a level ex
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