ITU-T G 322-1993 GENERAL CHARACTERISTICS RECOMMENDED FOR SYSTEMS ON SYMMETRIC PAIR CABLES《对称电缆系统推荐的一般特性》.pdf
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1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU).4%2.!4)/.!,G0G0!.!,/5%G0G0#!22)%2G0G03934%-3).$)6)$5!,G0G0#(!2!#4%2)34)#3G0G0/ if this is done, Scheme 1 bis ofFigure 2 b) /G.322, is obtained.1.3.3 Systems providing 5 groupsThe frequency spectrum transmitte
2、d to line should be in accordance with Scheme 2 of Figure 2 c)/G.322.Note 1 - Where there is direct interconnection between a system with 5 groups on symmetric pairs and systemswith a smaller number of groups, by agreement between the Administrations concerned, the system with 5 groups,shown in Sche
3、me 2 bis of Figure 2 c)/G.322, may be used.Note 2 - By agreement between the Administrations concerned, the arrangement in Figure 3/G.322 can be usedfor a supergroup on a coaxial cable system which is to be interconnected at basic supergroup frequencies (312-552 kHz)with either a 5-group system on s
4、ymmetric pairs using Scheme 2 bis Figure 2 c)/G.322, or with a 4-group system usingScheme 1 Figure 2 b)/G.322.Supplement No. 8 5 shows a simple way of assembling basic groups B into a supergroup in accordance withone of the schemes shown in Figure 3/G.322 and in Figure 1/G.338 6 and vice versa.1.3.4
5、 Systems providing 2 supergroupsFascicle III.2 - Rec. G.322 3The frequency spectrum transmitted to line should be in accordance with either Scheme 3 or Scheme 4 ofFigure 4/G.322, whichever the Administration decides.Supergroups 1 and 2 are the same as those in coaxial cable carrier systems. Supergro
6、up 1* is the same as thatnormally recommended for 5-group systems on symmetric cable pairs.4 Fascicle III.2 - Rec. G.322Note - By agreement between the Administrations concerned, for five group systems on symmetric cable pairs,instead of supergroup 1*, supergroup 1* may be used Scheme 2 bis, Figure
7、2 c)/G.322, which gives the arrangementshown in Scheme 3 bis of Figure 4/G.322.1.4 Line-regulating pilots1.4.1 Systems providing 1, 2, 3, 4 or 5 groupsEither of the following methods can be used (see Figure 5/G.322).Either of these methods can be chosen by the Administrations concerned and can be us
8、ed without difficulty,provided the pilots are efficiently suppressed at the end of a regulated-line section.a) Systems providing one, two or three groupsb) Systems providing four groupsc) Systems providing five groupsFIGURE 2/G.322Line-frequency allocation for international carrier systems on symmet
9、ric cable pairsFascicle III.2 - Rec. G.322 5a) Arrangement of groups and channels (supergroup 3 has been shown as an example)b) Example of possible positions, in the coaxial line-frequency band of the supergroup corresponding to Scheme 2 bis of Figure 2c)/G.322FIGURE 3/G.322Arrangement of groups in
10、a supergroup, which may be used in coaxialcarrier systems interconnected with systems on symmetric pairsFIGURE 4/G.322Line-frequency allocation for international carrier systemsproviding 2 supergroups on symmetric pair cables6 Fascicle III.2 - Rec. G.322FIGURE 5/G.322Line-regulating pilots for carri
11、er systems on symmetric pairsMethod A1) A pilot at 60 kHz with a power level of -15 dBm0, this frequency being in the gap between groups A andB and it being understood that this pilot would be used for regulation of the line on all regulated-linesections, whatever their length, and also for synchron
12、ization or checking of frequencies.2) Where necessary, and especially for long regulated-line sections, an additional line-regulating pilot 4 kHzabove the maximum frequency transmitted to line and with a power level of -15 dBm0.Note - There are in existence systems with five groups in which this pil
13、ot is only 1 kHz above the maximumfrequency transmitted.The recommendation under 2) above does not apply to systems with a single group.The recommended accuracy for these pilot frequencies is: 1 Hz for the 60-kHz pilot; 3 Hz for auxiliary pilot located 4 kHz above the maximum frequency of the channe
14、l group concerned.Method BTwo pilots situated in the basic group B at 64 kHz and at 104 kHz transmitted with a power level of -17 dBm0.On the high-frequency line, it is possible to have two pilots per 48 kHz of transmitted band and, from amongstthese pilots, 16 kHz and the maximum transmitted freque
15、ncy less 4 kHz are selected.Fascicle III.2 - Rec. G.322 7For systems having two or more groups, a third line-pilot is used, located between the top and bottom pilots,64 kHz is the frequency used in 2-group systems, and 112 kHz in 5-group systems.Note - Method B is hardly compatible with the use of a
16、 supergroup pilot and/or the alternative group pilot104.08 kHz (Table 4/G.232 and Recommendation G.233, 9).1.4.2 System providing 2 supergroupsThe following frequencies and levels are recommended (as shown in Method A of 1.4.1 above): lower pilot: 60 kHz power level of -15 dBm0; upper pilot: 4 kHz a
17、bove the highest transmitted frequency, i.e. at 556 kHz, power level of -15 dBm0.The recommended accuracy for the frequencies of these pilots is as follows: 1 Hz for the 60-kHz pilot; 3 Hz for the 556-kHz pilot.Note - If a supergroup is through-connected from a coaxial-pair system to occupy the posi
18、tion of the uppersupergroup in the band of line frequencies, there can be a residue from a line-regulating pilot or additional measuringfrequency. The recommendations for the through-supergroup equipment (Recommendation G.243) ensure that thisresidue will be sufficiently attenuated to cause no inter
19、ference with the line-regulating pilots or additional measuringfrequencies of another coaxial-pair system when these are sent at a power level of -10 dBm0. So that there will be nointerference with the 120-circuit system line-regulating pilot sent at -15 dBm0, this system should incorporate its owna
20、dditional protection of 5 dB at 556 kHz for a through-connected supergroup.1.5 Matching of repeater and line impedancesIt is desirable to limit the return-current coefficient at the ends of an elementary cable section so that the effectof the reflected near-end crosstalk does not contribute excessiv
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