ITU-T V 36-1988 MODEMS FOR SYNCHRONOUS DATA TRANSMISSION USING 60-108 kHz GROUP BAND CIRCUITS《使用60~108KHz基群电路进行同步数据传输的调制解调器-电话网络上的数据交流 第XVII研究组》.pdf
《ITU-T V 36-1988 MODEMS FOR SYNCHRONOUS DATA TRANSMISSION USING 60-108 kHz GROUP BAND CIRCUITS《使用60~108KHz基群电路进行同步数据传输的调制解调器-电话网络上的数据交流 第XVII研究组》.pdf》由会员分享,可在线阅读,更多相关《ITU-T V 36-1988 MODEMS FOR SYNCHRONOUS DATA TRANSMISSION USING 60-108 kHz GROUP BAND CIRCUITS《使用60~108KHz基群电路进行同步数据传输的调制解调器-电话网络上的数据交流 第XVII研究组》.pdf(12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$!4!G0G0#/-5.)#!4)/.G0G0/6%2G0G04(%G0G04%,%0(/.%.%47/2+-/$%-3G0G0 amended at Geneva, 1980,Malaga-Torremolinos, 1984 and Melbourne, 1988)On leased circuits, considering that there exist and will come into bein
2、g other modems with features designedto meet the requirements of the Administrations and users, this Recommendation in no way restricts the use of anyother modems.The only group reference pilot frequency which can be used in conjunction with this modem is 104.08 kHz.1 ScopeThe family of modems cover
3、ed by this Recommendation should be applicable to the following uses:a) transmission of data between customers on leased circuits;b) transmission of a multiplex aggregate bit stream for public data networks;c) extension of a PCM channel at 64 kbit/s over analogue facilities;d) transmission of a comm
4、on channel signalling system for telephony and/or public data networks;e) extension of Single-Channel-Per-Carrier (SCPC) circuit from a satellite earth station;f) transmission of a multiplex aggregate bit stream for telegraph and data signals.Principal recommended characteristics to be used for simu
5、ltaneous both-way synchronous operation are thefollowing:2 Data signalling rates2.1 Application a)The recommended data signalling rate (equals the customer signalling rate) for international use issynchronous at 48 kbit/s. For certain national applications or with bilateral agreement between Adminis
6、trations, thefollowing data signalling rates are applicable: 56, 64 and 72 kbit/s.2.2 Applications b), c) and d)For these applications, the recommended data signalling rate is synchronous at 64 kbit/s.For those synchronous networks requiring the end-to-end transmission of both the 8 kHz and 64 kHz t
7、imingtogether with the data at 64 kbit/s, a data signalling rate of 72 kbit/s on the line is suggested.The corresponding data format should be obtained by inserting one extra bit E just before the first bit of eachoctet of the 64 kbit/s data stream. The bits E convey alignment and housekeeping infor
8、mation, according to the patternshown in Figure 1/V.36.2 Fascicle VIII.1 - Rec. V.36The use of the housekeeping bits H is determined with bilateral agreement between Administrations. Whennot used, these bits should be assigned the value 1. A framing strategy is not specified in this Recommendation.W
9、hen the transmission of the 8 kHz timing is not required, the data signalling rate on the line may be64 kbit/s.2.3 Application e)The recommended data signalling rate (equals the customer signalling rate) for international use issynchronous at 48 kbit/s. For certain national applications or with bila
10、teral agreement between Administrations the datasignalling rate of 56 kbit/s is applicable.2.4 Application f)The recommended data signalling rate is synchronous at 64 kbit/s.2.5 The permitted tolerance for all the data signalling rates mentioned above is 5 10-5bit/s.Note - There are equipments in se
11、rvice which will only work successfully with a maximum tolerance of thedata signalling rate of 1 bit/s.3 Scrambler/descramblerIn order to be bit sequence independent and to avoid high amplitude spectral components on the line, the datashould be scrambled and descrambled by means of the logical arran
12、gements described in Appendix I.4 Baseband signalThe 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 data signalling rate.This shapin
13、g process should be effected in such a way that the decoding can be achieved by full waverectification of the demodulated line signal.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 conver
14、ted to and from the line signal without appearing as anactual baseband signal.5 Line signal in 60-108 kHz band (at the line output of the modem)5.1 In the 60-108 kHz band the line signal should correspond to a single sideband signal with its carrierfrequency at 100 kHz 2 Hz.Fascicle VIII.1 - Rec. V.
15、36 35.2 The relationship between the binary signals at the real or hypothetical output of the scrambler and thetransmitted line signal states shall be in accordance with the amplitude modulation case of Recommendation V.1, i.e.,tone ON for binary 1 and tone OFF for binary 0.In a practical case this
16、means that the voltage or no voltage conditions which will result from the full waverectification of the demodulated line signal will correspond with the binary 1 and binary 0 signals respectively at theoutput of the scrambler.5.3 The amplitude of the theoretical line signal spectrum, corresponding
17、to binary symbol 1 appearing at theoutput of the scrambler, is to be sinusoidal, with zeros and maxima at the frequencies listed below:Data signalling rate(kbit/s)Zeros at(kHz)Maxima at(kHz)6448567268 and 10076 and 10072 and 10064 and 100848886825.4 In the 60-108 kHz band, amplitude distortion of th
18、e real spectrum relative to the theoretical spectrum asdefined under 5.3 above is not to exceed 1 dB; the group delay distortion is not to exceed 8 microseconds. Thesetwo requirements are to be met for each frequency band centred on one of the maxima mentioned in 5.3 and whosewidth is equal to 80% o
19、f the frequency band used.5.5 The nominal level of the line data signal should be -6 dBm0. The actual level should be within 1 dB of thenominal level.5.6 A pilot carrier at the same frequency as the modulated carrier at the transmitter and with a level of-9 0.5 dB relative to the actual level mentio
20、ned under 5.5 above, should be added to the line signal. The relativephase between the modulated carrier and the pilot carrier at the transmitter should be time invariant.6 Group reference pilot6.1 Provision should be made for facilitating the injection of a group reference pilot of 104.08 kHz from
21、a sourceexternal to the modem.6.2 The protection of the group reference pilot should conform to Recommendation H.52 1.7 Voice channel7.1 The service speech channel is an integral part of the applications a) and e) of this system and is used on anoptional basis. The channel corresponds to channel 1 o
22、f a 12-channel SSB-AM system in the 104-108 kHz band(virtual carrier at 108 kHz). It can transmit continuous voice at a mean level of maximum -15 dBm0 or pulsedsignalling tones according to the individual specifications.To avoid overloading of the system by peak signals a limiter shall be used with
23、cut-off levels above +3 dBm0.To avoid stability problems the channel shall be connected to 4-wire equipment only.For operator-to-operator signalling Recommendation Q.1 2 shall be followed, but instead of 500/20 Hz anon-interrupted tone of 2280 Hz at a level of -10 dBm0 shall be used.4 Fascicle VIII.
24、1 - Rec. V.36For other signalling purposes application e) the R1 or R2 inband signalling, described inRecommendations Q.322 3, Q.323 4 and Q.454 5, Q.455 6 respectively, is preferred.The transmit filter shall be such that any frequency applied to the transmit input terminals at a level of-15 dBm0 wi
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