ITU-T G 341-1993 1 3 MHz SYSTEMS ON STANDARDIZED 1 2 4 4 mm COAXIAL CABLE PAIRS《1 2 4 4mm标准同轴电缆线对上的1 3MHz系统》.pdf
《ITU-T G 341-1993 1 3 MHz SYSTEMS ON STANDARDIZED 1 2 4 4 mm COAXIAL CABLE PAIRS《1 2 4 4mm标准同轴电缆线对上的1 3MHz系统》.pdf》由会员分享,可在线阅读,更多相关《ITU-T G 341-1993 1 3 MHz SYSTEMS ON STANDARDIZED 1 2 4 4 mm COAXIAL CABLE PAIRS《1 2 4 4mm标准同轴电缆线对上的1 3MHz系统》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
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/ further amended)Preliminary noteThe present Recommendation describes two types of systems on coaxial cable pairs providing 300 te
2、lephonechannels in the approximate frequency band 0.06 to 1.3 MHz. The length of the elementary cable section is about 6 kmfor the first type of system and about 8 km for the second. The first is to be preferred when it is planned to equip thecable with 6 MHz repeaters later on, the second when it i
3、s planned to install systems belonging to the other family onthe cable later on, i.e. the 4 MHz system, 12 MHz system or 18 MHz system.1 Line frequenciesThe system will carry 300 telephony channels, transmitted to line:- either between 60 kHz and 1300 kHz as supergroups Nos. 1-5 of the 4 MHz system
4、(Figure 1 a)/G.341);- or between 64 kHz and 1296 kHz as a mastergroup with erect channel sidebands (Figure 1 b)/G.341).FIGURE 1/G.341Line-frequency arrangements for international carrier 1.3-MHz systemson 1.2/4.4-mm coaxial pair2 Pilots and additional measuring frequencies2.1 Line-regulating pilotTh
5、e CCITT recommends that 1364 kHz be used for the main line-regulating pilot on all regulated-line sections2 Fascicle III.2 - Rec. G.341crossing a frontier. The main line-regulating pilot is used for automatic correction of cable attenuation with thetemperature.In any regulated-line section crossing
6、a frontier, it is recommended that in both directions of transmission theAdministration on the transmitting side permanently transmit an auxiliary line-regulating pilot at 60 or 308 kHz, as theAdministration on the receiving side may choose, so as to provide for additional regulation, for example.Th
7、e frequency accuracy recommended for the pilots is 1 10-5.The power level of these pilots should be adjusted at the output of the transmit amplifier to have a nominalvalue of - 10 dBm0. The harmonics of the 60 and 308 kHz pilots should each have a level not higher than -70 dBm0.The tolerances for th
8、is level are the same as in Recommendation G.332, 2.1.Note - Some systems in use employ a pilot at -1.2 Nm0.2.2 Frequency-comparison pilotsFor national frequency comparison, it is recommended that a 60 or 308 kHz pilot be used. Should internationalfrequency comparison appear desirable, the Administr
9、ations concerned will reach agreement on which of these twofrequencies they will use.The power level of a frequency-comparison pilot should be adjusted at the output of the transmit amplifier, toa nominal value of -10 dBm0. The harmonics of the frequency-comparison pilots should each have a level no
10、t higherthan -70 dBm0.2.3 Additional measuring frequenciesFrequencies that can be used as additional measuring frequencies are as follows:- supergroups Nos. 1 to 5 frequency allocation: (60), (308), 556, 808, 1056, 1304 kHz;- mastergroup frequency allocation: (60), (308), 804, 1052, 1304 kHz.Note -
11、One of the two frequencies in brackets will be used for the auxiliary line-regulating pilot.The power level of these additional measuring frequencies should be adjusted, at the output of the transmitamplifier, to have a nominal value of -10 dBm0. The harmonics of the additional measuring frequencies
12、 below 650kHz should each have a level at this point not higher than -70 dBm0.Note - Some systems in use employ additional pilots at -1.2 Nm0.The additional measuring frequencies should not be permanently transmitted. They will be transmitted onlyfor as long as is necessary for actual measurement pu
13、rposes.3 Hypothetical reference circuitThe CCITT has defined two hypothetical reference circuits, one for supergroup arrangement and the other formastergroup arrangement. Both are 2500 km long and are divided into nine homogeneous sections of 280 km each.3.1 Hypothetical reference circuit used in su
14、pergroup arrangement1)This hypothetical reference circuit (see Figure 2/G.341) has, for each direction of transmission, a total of:- three pairs of channel modulators, each pair including translation from the audio-frequency band to thebasic group and vice versa;- six pairs of group modulators, each
15、 pair including translation from the basic group to the basicsupergroup_1)This hypothetical reference circuit is also used for 4 MHz and 6 MHz systems transmitting supergroups on1.2/4.4 mm coaxial pairs and for systems providing two supergroups on symmetric pairs.Fascicle III.2 - Rec. G.341 3and vic
16、e versa;- nine pairs of supergroup modulators, each pair including translation from the basic supergroup to thefrequency band transmitted on the coaxial cable and vice versa.It will be seen that there is a total of 18 modulations and 18 demodulations for each direction of transmission,assuming that
17、each modulation or demodulation is carried out in a single stage.FIGURE 2/G.341Diagram of the hypothetical reference circuit for 1.3-MHz systemson coaxial cable using supergroup arrangement3.2 Hypothetical reference circuit used in mastergroup arrangementThis hypothetical reference circuit (see Figu
18、re 3/G.341) has, for each direction of transmission, a total of:- three pairs of channel modulators, each pair including translation from the audio-frequency band to thebasic group and vice versa;- three pairs of group modulators, each pair including translation from the basic group to the basicsupe
19、rgroup and vice versa;- six pairs of supergroup modulators, each pair including translation from the basic supergroup to thefrequency band of the basic mastergroup and vice versa;- nine pairs of mastergroup modulators, each pair including translation from the basic mastergroup to thefrequency band t
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