ITU-T V 27 BIS-1988 4800 2400 BITS PER SECOND MODEM WITH AUTOMATIC EQUALIZER STANDARDIZED FOR USE ON LEASED TELEPHONE-TYPE CIRCUITS《租用电话型电路上使用的标准化4800bit s带人工均衡器的调制解调器-电话网络上的数据交流》.pdf
《ITU-T V 27 BIS-1988 4800 2400 BITS PER SECOND MODEM WITH AUTOMATIC EQUALIZER STANDARDIZED FOR USE ON LEASED TELEPHONE-TYPE CIRCUITS《租用电话型电路上使用的标准化4800bit s带人工均衡器的调制解调器-电话网络上的数据交流》.pdf》由会员分享,可在线阅读,更多相关《ITU-T V 27 BIS-1988 4800 2400 BITS PER SECOND MODEM WITH AUTOMATIC EQUALIZER STANDARDIZED FOR USE ON LEASED TELEPHONE-TYPE CIRCUITS《租用电话型电路上使用的标准化4800bit s带人工均衡器的调制解调器-电话网络上的数据交流》.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 6 G0BISTELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU$!4!G0G0#/-5.)#!4)/./6%2G0G04(%G0G04%,%0(/.%G0G0.%47/2+G0“)43G0G00%2G0G03%#/.$G0G0-/$%-G0G07)4(!54/-!4)#G0G0%15!,):%2G0G034!.$!2$):%$amended at Geneva, 1980,Malaga-Torremolinos, 1984)IntroductionThis mod
2、em is intended to be used over any general leased circuits not necessarily conforming toRecommendation M.1020 1. A provision for a fast start-up sequence is made to allow the use of this modem formultipoint polling applications if the circuits used conform to Recommendation M.1020.On leased circuits
3、, considering that there exist and will come into being many modems with features designedto meet the requirements of the Administrations and users, this Recommendation in no way restricts the use of any othermodems. This Recommendation does not eliminate the need for manually equalized modems accor
4、ding toRecommendation V.27 or application of other automatically equalized 4800 bits per second modems.The provisions of this Recommendation are to be regarded as provisional in order to provide service where it isurgently required and between locations where it is expected that a reasonably satisfa
5、ctory service can be given.1 Principal characteristicsThe principal characteristics for this recommended modem are very similar to the characteristics of a modemconforming to Recommendation V.27 with the exception of the equalizer used and these characteristics are as follows:a) operates in a full-d
6、uplex or half-duplex mode over 4-wire leased circuits or in a half-duplex mode over2-wire leased circuits;b) at 4800 bits per second operation, modulation is 8-phase differentially encoded as described inRecommendation V.27;c) reduced rate capability at 2400 bits per second with 4-phase differential
7、ly encoded modulation scheme asdescribed in Recommendation V.26, Alternative A;d) possibility of a backward (supervisory) channel at modulation rates up to 75 bauds in each direction oftransmission, the provision and the use of these channels being optional;e) inclusion of an automatic adaptive equa
8、lizer with a specific start-up sequence for RecommendationM.1020 1 lines and an alternate start-up sequence for much lower grade lines.2 Line signals at 4800 and 2400 bits per second operation2.1 Carrier frequencyThe carrier frequency is to be 1800 1 Hz. No separate pilot tones are provided. The pow
9、er levels used willconform to Recommendation V.2.2.1.1 Spectrum at 4800 bits per secondA 50% raised cosine energy spectrum shaping is equally divided between the receiver and transmitter. Theenergy density at 1000 Hz and 2600 Hz shall be attenuated 3.0 dB 2.0 dB with respect to the maximum energy de
10、nsitybetween 1000 Hz and 2600 Hz.2.1.2 Spectrum at 2400 bits per secondA minimum of 50% raised cosine energy spectrum shaping is equally divided between the receiver andtransmitter. The energy density at 1200 Hz and 2400 Hz shall be attenuated 3.0 dB 2.0 dB with respect to themaximum energy density
11、between 1200 Hz and 2400 Hz.2 Fascicle VIII.1 - Rec. V.27 bis2.2 Division of power between the forward and backward channelIf simultaneous transmission of the forward and backward channels occurs in the same direction, a backwardchannel should be 6 dB lower in power level than the forward (data) cha
12、nnel.2.3 Operation at 4800 bits per second2.3.1 Data signalling and modulation rateThe data signalling rate shall be 4800 bits per second 0.01%, i.e. the modulation rate is 1600 bauds 0.01%.2.3.2 Encoding data bitsThe data stream to be transmitted is divided into groups of three consecutive bits (tr
13、ibits). Each tribit is encodedas a phase change relative to the phase of the preceding signal element (see Table 1/V.27 bis). At the receiver, the tribitsare decoded and the bits are reassembled in correct order. The left-hand digit of the tribit is the one occurring first in thedata stream as it en
14、ters the modulator portion of the modem after the scrambler.TABLE 1/V.27 bisTribit valuesPhase change(see Note)00001111001111001001100104590135180225270315Note - The phase change is the actual on-line phase shift in thetransition region from the centre of one signalling element to thecentre of the f
15、ollowing signalling element.2.4 Operation at 2400 bits per second2.4.1 Data signalling and modulation rateThe data signalling rate shall be 2400 bits per second 0.01%, i.e. the modulation rate is 1200 bauds 0.01%.2.4.2 Encoding data bitsAt 2400 bits per second the data stream is divided into groups
16、of two bits (dibits). Each dibit is encoded as aphase change relative to the phase of the immediately preceding signal element (see Table 2/V.27 bis). At the receiver,the dibits are decoded and reassembled in the correct order. The left-hand digit of the dibit is the one occurring first inthe data s
17、tream as it enters the modulator portion of the modem after the scrambler.Fascicle VIII.1 - Rec. V.27 bis 3TABLE 2/V.27 bisDibit values Phase change (see Note)00011110090180270Note - The phase change is the actual on-line phase shift in thetransition region from the centre of one signalling element
18、to thecentre of the following signalling element.2.5 Operating sequences2.5.1 Turn-ON sequenceDuring the interval between the OFF to ON transition of circuit 105 and the OFF to ON transition of circuit106, synchronizing signals for proper conditioning of the receiving modem must be generated by the
19、transmittingmodem. These are signals to establish carrier detection, AGC if required, timing synchronization, equalizer convergenceand descrambler synchronization.Two sequences are defined, i.e.:a) a short one for 4-wire circuits conforming to Recommendation M.1020 1 operation,b) a long one for 4-wi
20、re circuits which are much worse than Recommendation M.1020 1 and for 2-wirecircuits.The sequences, for both data rates, are divided into three segments as in Table 3/V.27 bis.TABLE 3/V.27 bisSegment 1 Segment 2 Segment 3 Total of Segments 1, 2 and 3Type of line signalContinuous 180phase reversals0-
21、180 2-phaseequalizerContinuousscrambledTotal “Turn-ON“sequence timeconditioningpatternONEs4800 bit/s 2400 bit/sNumber of symbolintervals (SI) a)a) 14 SIb) 50 SIa) 58 SIb) 1074 SI8 SIa) 50 msb) 708 msa) 67 msb) 943 msa) SI = symbol intervals. The durations of Segments 1, 2 and 3 are expressed in numb
22、er of symbol intervals, these numbersbeign the same in fallback operation.2.5.1.1 The composition of Segment 1 is continuous 180 phase reversals on line for 14 symbol intervals in the case ofsequence a), for 50 symbol intervals in the case of sequence b).2.5.1.2 Segment 2 is composed of an equalizer
23、 conditioning pattern which is derived from a pseudo-random sequencegenerated by the polynomial:1 + x -6+ x -72.5.1.2.1 For operation at 4800 bit/s the equalizer conditioning pattern is derived by using every third bit of the pseudo-random sequence defined in 2.5.1.2. When the derived pattern contai
24、ns a ZERO, 0 phase change is transmitted; when4 Fascicle VIII.1 - Rec. V.27 bisit contains a ONE, 180 phase change is transmitted. Segment 2 begins with 0, 180, 180, 180, 180, 180, 0, . . .according to the derived pattern and continues for 58 symbol intervals in the case of sequence a) and for 1074
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