ITU-T G 332-1993 12 MHz SYSTEMS ON STANDARDIZED 2 6 9 5 mm COAXIAL CABLE PAIRS《2 6 9 5mm标准同轴电缆线对上的12MHz系统》.pdf
《ITU-T G 332-1993 12 MHz SYSTEMS ON STANDARDIZED 2 6 9 5 mm COAXIAL CABLE PAIRS《2 6 9 5mm标准同轴电缆线对上的12MHz系统》.pdf》由会员分享,可在线阅读,更多相关《ITU-T G 332-1993 12 MHz SYSTEMS ON STANDARDIZED 2 6 9 5 mm COAXIAL CABLE PAIRS《2 6 9 5mm标准同轴电缆线对上的12MHz系统》.pdf(14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/ amended at Geneva, 1980)This Recommendation defines a coaxial cable system providing 2700 telephony channels in the frequency ban
2、d0.3 MHz to about 12.4 MHz which, according to the provisions of Recommendation J.73 1, can alternatively be used toprovide 1200 telephone channels in the frequency band 0.3 MHz to about 5.6 MHz and one TV-channel in the band of about6 MHz to 12.3 MHz for the transmission of a vestigial sideband tel
3、evision signal with an effectively transmitted video-frequency band up to 5.5 MHz. The repeaters should be spaced at about 4.5 km.1 Arrangement of line frequencies for telephonyThe arrangement of the line frequencies for telephony shall conform to Plans 1A, 1B or 2 described below. Plan 1A isto be p
4、referred to Plan 1B. In international relations between countries using different modulation procedures (seeRecommendation G.211) and in the absence of any special arrangement between the Administrations concerned including, ifnecessary, the Administrations of transit countries, Plans 1 are to be pr
5、eferred to Plan 2.1.1 Frequency arrangement of Plan 1APlan 1A uses the first modulation procedure described in Recommendation G.211.The telephone channels should first be assembled into basic supermastergroups. Three supermastergroups aretransmitted to line in accordance with the frequency arrangeme
6、nt of Figure 1/G.332.In this figure the virtual carrier frequencies of the two lower supermastergroups are shown.1.2 Frequency arrangement of Plan 1BFrequencies below 4287 kHzFor frequencies below 4287 kHz, Plan 1B uses the second modulation procedure described inRecommendation G.211.The telephone c
7、hannels should first be assembled into supergroups. Fifteen supergroups are transmitted to line inaccordance with the frequency arrangement of Figure 2/G.332 (frequencies below 4287 kHz). These fifteen supergroupscomprise the basic 15-supergroup assembly (No. 1) described in Recommendation G.233; th
8、e carrier frequencies are shown inthat Recommendation. Figure 3/G.332 gives further details of the frequency arrangement below 4287 kHz.Frequencies above 4287 kHzFor frequencies above 4287 kHz, Plan 1B, uses the first modulation procedure described in Recommendation G.211.For frequencies above 4287
9、kHz, the frequency arrangement of Figure 2/G.332 is identical with that ofFigure 1/G.332.2 Fascicle III.2 - Rec. G.332FIGURE 1/G.332Plan 1A frequency arrangement for 12 MHz systemsFIGURE 2/G.332Plan 1B frequency arrangement for 12 MHz systemFIGURE 3/G.332Plan 1B frequency arrangement for 12 MHz syst
10、ems: frequencies below 4287 kHZFascicle III.2 - Rec. G.332 31.3 Frequency arrangement of Plan 2This plan uses the second modulation procedure described in Recommendation G.211.The telephone channels should be assembled into basic (No. 1) 15-supergroup assemblies. Three 15-supergroupassemblies are tr
11、ansmitted to line in accordance with the frequency arrangement shown in Figure 4/G.332. In this figure, thevirtual carrier frequencies of 15-supergroup assemblies Nos. 2 and 3 are shown.2 Pilots and additional measuring frequencies2.1 Line-regulating pilotsThe CCITT recommends that 12 435 kHz be use
12、d for the main line-regulating pilot.In any regulated-line section crossing a frontier, it is recommended that in both directions of transmission theAdministration on the sending side should permanently transmit one or two auxiliary line-regulating pilots at 308 and/or4287 kHz, at the choice and req
13、uest of the Administration on the receiving side so as to provide for additional regulation, forexample.The frequency accuracy recommended for the pilots is 1 10-5.The power level of the main and auxiliary line-regulating pilots should be adjusted at the point of injection to have avalue of -10 dBm0
14、. The harmonics of the 308 and 4287 kHz pilot should each have a level not higher than -70 dBm0.Equipment should be designed in such a way that these pilots may be blocked at the end of a regulated-line section, sothat their level shall be at least 40 dB below that of the pilots used on other sectio
15、ns.FIGURE 4/G.332Plan 2 frequency arrangement for 12 MHz systems4 Fascicle III.2 - Rec. G.332The following tolerances for the level of these pilots are recommended:1) The design of equipment should be such as to allow the error in the level of any pilot as transmitted, due to finitelevel adjustment
16、steps, to be kept within 0.1 dB.2) The change in output level of the pilot generator with time (which is a factor included in equipmentspecifications) must not exceed 0.3 dB during the interval between two maintenance adjustments, e.g. in onemonth.3) To reduce pilot level variations with time, it is
17、 advisable to have a device to give an alarm when the variation atthe generator output exceeds 0.5 dB, the zero of the warning device being aligned as accurately as possiblewith the lining-up level of the transmitted pilot.The attention of Administrations is drawn to the difficulty which could resul
18、t from an appreciable reduction in theabsolute power level of the pilot sent to line; such a reduction is liable to cause “near singing“, resulting from the operation ofthe automatic gain-control amplifiers. It would be desirable to make arrangements for overcoming this difficulty if it shouldarise.
19、Note - When pre-emphasis and de-emphasis is applied on the line link, it is necessary to define the line pilot levelwith reference to a point, possibly hypothetical, at the input to or output from the line, at which the relative levels of alltelephone channels are equal over the whole of the line-fr
20、equency band. When a part of the line-frequency band is to be usedto provide a television channel, different pre-emphasis and de-emphasis networks may be required but this will not affect thedefinition of line pilot levels. Figures 5/G.332 and 6/G.332 show two hypothetical arrangements for the purpo
21、se of thisdefinition.2.2 Frequency comparison pilotsAdministrations wishing to make an international frequency comparison shall choose the frequency 300, 808 or1552 kHz for this purpose, when it is impossible to use 308 or 1800 kHz. International comparison of national standards isrelatively rare. D
22、uring a specified period of time, it will always be possible to use for such comparisons one of the frequenciesmentioned above, even though it may normally be used as an additional measuring frequency.Note - Between points A and B, the gain/frequency response of the high-frequency line is uniform fo
23、r telephony. At these points, alltelephone channels are at equal relative level. Between points A and B, the gain/frequency response of the high-frequency line is uniformfor television.FIGURE 5/G.332To illustrate the definition of line-regulating pilot levels on a line suitablefor carrying both tele
24、phony and televisionFascicle III.2 - Rec. G.332 5FIGURE 6/G.332An example of high-frequency line equipment for a 12-MHz “mixed“ systemfor simultaneous telephony and television transmission. The relative levels for telephony would be defined for the points A and BA frequency of 300 kHz can be used fo
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