ITU-T V 27 TER-1988 4800 2400 BITS PER SECOND MODEM STANDARDIZED FOR USE IN THE GENERAL SWITCHED TELEPHONE NETWORK《公用电话交换网中使用的标准化4800 2400bit s调制解调器-电话网络上的数据交流》.pdf
《ITU-T V 27 TER-1988 4800 2400 BITS PER SECOND MODEM STANDARDIZED FOR USE IN THE GENERAL SWITCHED TELEPHONE NETWORK《公用电话交换网中使用的标准化4800 2400bit s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 TER-1988 4800 2400 BITS PER SECOND MODEM STANDARDIZED FOR USE IN THE GENERAL SWITCHED TELEPHONE NETWORK《公用电话交换网中使用的标准化4800 2400bit s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 G0TERTELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU$!4!G0G0#/-5.)#!4)/.G0G0/6%2G0G04(%G0G04%,%0(/.%.%47/2+G0“)43G0G00%2G0G03%#/.$G0G0-/$%-34!.$!2$):%$G0G0 amended at Geneva, 1980,Malaga-Torremolinos, 1984)The CCITT,considering(a) that there is a demand f
2、or data transmission at 4800 bits per second over the general switchedtelephone network;(b) that a majority of connections over the general switched telephone network within some countries arecapable of carrying data at 4800 bits per second;(c) that a lower proportion of international connections in
3、 the general switched telephone network arecapable of carrying data at 4800 bits per second;(d) that other international connections in the general switched telephone network may still supportoperations at 2400 bits per second using a built-in fallback capability;unanimously declares the viewthat tr
4、ansmission at 4800 bits per second should be allowed on the general switched telephone network.Reliable transmission cannot be guaranteed on every connection or routing and tests should be made between the mostprobable terminal points before a service is provided. The CCITT expects that developments
5、 during the next few yearsin modern technology will bring about modems of more advanced design enabling reliable transmission to be given on amuch higher proportion of connections. The provisions of this Recommendation are to be regarded as provisional inorder to provide service where it is urgently
6、 required and between locations where it is expected that a reasonablysatisfactory service can be given;that the characteristics of the modem for transmission at 4800 bits per second over the general switchedtelephone network shall provisionally be the following:1 Principal characteristicsa) Use of
7、data signalling rate of 4800 bits per second with 8-phase differentially encoded modulation asdescribed in Recommendation V.27.b) Reduced rate capability at 2400 bits per second with 4-phase differentially encoded modulation asdescribed in Recommendation V.26, Alternative A.c) Provision for a backwa
8、rd channel at modulation rates up to 75 bauds, use of this channel being optional.d) Inclusion of an automatic adaptive equalizer.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 power le
9、vels used willconform to Recommendation V.2.2.1.1 Spectrum at 4800 bits per secondThe 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 densi
10、tybetween 1000 Hz and 2600 Hz.2 Fascicle VIII.1 - Rec. V.27 ter2.1.2 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
11、 to themaximum energy density between 1200 Hz and 2400 Hz.2.2 Division of power between the forward and backward channelEqual division between the forward and backward channels is recommended (if provided).2.3 Operation at 4800 bits per second2.3.1 Data signalling and modulation rateThe data signall
12、ing 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 (tribits). Each tribit is encodedas a phase change relative to the phase of the preceding signal eleme
13、nt (see Table 1/V.27 ter). 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 enters the modulator portion of the modem after the scrambler.TABLE 1/V.27 terTribit values Phase cha
14、nge(see Note)00001111001111001001100104590135180225270315Note - The phase change is the actual on-line phase shift inthe transition region from the centre of one signalling elementto the centre of the following signalling element.2.4 Operation at 2400 bits per second2.4.1 Data signalling and modulat
15、ion 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 of two bits (dibits). Each dibit is encoded as aphase change relative to the phase of the immediate
16、ly preceding signal element (see Table 2/V.27 ter). At the receiver,the dibits are decoded and the bits are reassembled in the correct order. The left-hand digit of the dibit is the oneoccurring first in the data stream as it enters the modulator portion of the modem after the scrambler.Fascicle VII
17、I.1 - Rec. V.27 ter 3TABLE 2/V.27 terDibit values Phase change (see Note)00011110090180270Note - The phase change is the actual on-line phase shift inthe transition region from the centre of one signalling elementto the centre of the following signalling element.2.5 Operating sequences2.5.1 Turn-ON
18、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 transmittingmodem. These are signals to establish carrier detect, AGC if required, tim
19、ing synchronization, equalizer convergenceand descrambler synchronization.The synchronizing signals are defined in two separate sequences with the long sequence used once at thebeginning of the established connection and the short sequence used for subsequent turn-around in which the equalizertraini
20、ng pattern is used to update and refine equalizer convergence.Two sequences are defined, i.e.:a) a short one for turn-around operation,b) a longer one for initial establishment of connection.The sequence b) is only used after the first OFF to ON transition of circuit 105 following the OFF to ONtrans
21、ition of circuit 107, or at the OFF to ON transition of circuit 107 if the circuit 105 is already ON. After everysubsequent OFF to ON transition of circuit 105, the sequence a) is used.The sequences, for both data rates, are divided into five segments as in Table 3/V.27 ter.2.5.1.1 The composition o
22、f Segment 3 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 4 is composed of an equalizer conditioning pattern which is derived from a pseudo-random sequencegenerated by the polynomial:1 +
23、 x-6+ x-7For operation at both 4800 bit/s and 2400 bit/s, the equalizer conditioning pattern is derived by using everythird bit of the pseudo-random sequence defined by the polynomial. When the derived pattern contains a ZERO, 0phase change is transmitted; when it contains a ONE, 180 phase change is
24、 transmitted. Segment 4 begins with 0, 180,180, 180, 180, 180, 0, . . . according to the derived pattern and continues for 58 symbol intervals in the case ofsequence a) and for 1074 symbol intervals in the case of sequence b). An example of the detailed sequence generation isdescribed in Appendix I.
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