ITU-T G 737-1993 CHARACTERISTICS OF AN EXTERNAL ACCESS EQUIPMENT OPERATING AT 2048 kbit s OFFERING SYNCHRONOUS DIGITAL ACCESS AT 384 kbit s AND OR 64 kbit s《工作在2048kbit s并提供384kbit.pdf
《ITU-T G 737-1993 CHARACTERISTICS OF AN EXTERNAL ACCESS EQUIPMENT OPERATING AT 2048 kbit s OFFERING SYNCHRONOUS DIGITAL ACCESS AT 384 kbit s AND OR 64 kbit s《工作在2048kbit s并提供384kbit.pdf》由会员分享,可在线阅读,更多相关《ITU-T G 737-1993 CHARACTERISTICS OF AN EXTERNAL ACCESS EQUIPMENT OPERATING AT 2048 kbit s OFFERING SYNCHRONOUS DIGITAL ACCESS AT 384 kbit s AND OR 64 kbit s《工作在2048kbit s并提供384kbit.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU%.%2!,G0G0!30%#43G0G0/- unidirectional synchronous 384 kbit/s access (Figure l b/G.737).The 384 kbit/s channel is based on the allocation of 6 x 64 kbit/s time slots, e.g. for setting up sound-programme circuit
2、s according to Recommendations J.41 and J.42. Because these circuits are specified as unidirectionalthe equipment for insertion/extraction has to be separated as shown in Figure l b/G.737.FIGURE 1/G.737External access equipment for 64 and 384 kbit/s channels2 Fascicle III.4 - Rec. G.7371 General cha
3、racteristics1.1 Bit rateThe nominal bit rate is 2048 kbit/s. The tolerance on this rate is 50 parts per million (ppm).1.2 Types of external accessa) Bidirectional synchronous insertion/extraction of 64 kbit/s data channels (see Figure l a/G.737).Note 1 - The timing signal for the insertion side shou
4、ld be derived from the 2048 kbit/s incoming signal atthe insertion side (I0): the timing signal for the extraction side should be derived from the 2048 kbit/sincoming signal at the extraction side (E1).Note 2 - The provision of a timing signal output, available for the purpose of synchronizing other
5、equipments, is an option that might be required depending upon national synchronization arrangements.Note 3 - Further study is required on the possible need for an internal clock.b) Unidirectional synchronous insertion and extraction of a digital sound-programme signal into/out of a384 kbit/s channe
6、l (see Figure l b/G.737).Note - The synchronous insertion equipment for 384 kbit/s signals requires the internal regeneration of atiming signal synchronized by the 2048 kbit/s input signal I0. This timing signal output of the synchronousinsertion equipment is used for synchronizing the sampling freq
7、uency of the analogue/digital converter.2 Frame structure and use of derived channel time slots2.1 Frame structure of the 2048 kbit/s signalRefer to 2.3 of Recommendation G.704. Bit 1 of the frame should be used in accordance with 2.3.3 ofRecommendation G.704, i.e. for a CRC check bit procedure.2.2
8、Use of derived channel time slotsTime slots not accessed flow transparently through the equipment.Note - Further study is required as to whether the binary content of time slots used at the access points shouldbe replaced, after extraction from the composite signal, by the AIS.2.2.1 64 kbit/s access
9、The number of accessible channel time slots should be at least four and the equipment shall allow access to anyof channel time slots 1 to 15 and 17 to 31.Note - Equipment exists which provides access to at least four channel time slots in the following order ofpriority: 6 - 22 - 14 - 30 - 2 - 18 - 1
10、0 - 26 - 4 - 20 - 12 - 28 - 8 - 24 - 5 - 21 - 13 - 29 - 1 - 17 - 9 - 25 - 3 - 19 - 11 - 27 - 7 -23 - 15 - 31.2.2.2 384 kbit/s accessThe time slot allocation for digital channels with a bit rate at 384 kbit/s is given in Table 1/G.737.Fascicle III.4 - Rec. G.737 3TABLE 1/G.737384 kbit/s channels (Not
11、e 1)Digital sound-programme accessABCDEpoints1-2-317-18-194-5-620-21-227-8-923-24-2510-11-1226-27-2813-14-1529-30-31I3, T, E3Figure 1b/G.735Note 1 - The five possible 384 kbit/s channels in a 2048 kbit/s stream are numbered A to E. Preferably the channel pairs A-B and C-Dshould be used for stereopho
12、nic transmission.Note 2 - If the channel time slot 16 which is assigned to signalling as covered in 5 is not needed for signalling, it may be used forpurposes other than a voice channel encoded within the PCM multiplex equipment.3 Frame alignment and CRC procedures both at insertion (I0) and extract
13、ion (E1) sidesAn illustration of the procedure is given in Figure 2/G.706.3.1 Loss of frame alignmentRefer to 4.1.1 of Recommendation G.706.3.2 Recovery of frame alignmentRefer to 4.1.2 of Recommendation G.706.3.3 CRC multiframe alignment in TSORefer to 4.2 of Recommendation G.706.3.4 CRC bit monito
14、ringRefer to 4.3 of Recommendation G.706.4 Fault conditions and consequent actions4.1 Fault conditionsThe equipment should detect the following fault conditions:4.1.1 Failure of power supply.4.1.2 Loss of incoming signal at I2or I3.Note - This detection is not mandatory when contradirectional interf
15、aces are used.4.1.3 Loss of the incoming signal at 2048 kbit/s both at insertion (I0) and extraction (E1) sides.Note 1 - The detection of this fault condition is required only when it does not result in an indication of loss offrame alignment.Note 2 - Where separate circuits are used for the digital
16、 signal and the timing signal, the loss of either or bothshould constitute loss of the incoming signal.4.1.4 Loss of frame alignment both at insertion (I0) and extraction (E1) sides.4 Fascicle III.4 - Rec. G.7374.1.5 Excessive bit error ratio detected by monitoring the frame alignment signal at both
17、 the insertion (I0) andextraction (E1) sides.Note - The detection of this fault condition at insertion side (I0) depends on the type of application of thisequipment in a network and therefore is not mandatory.4.1.5.1 With a random bit error ratio of 10-4, the probability of activating the indication
18、 of fault condition within afew seconds should be less than 10-6.With a random bit error ratio of 10-3, the probability of activating the indication of fault condition within afew seconds should be higher than 0.95.4.1.5.2 With a random bit error ratio of 10-3, the probability of deactivating the in
19、dication of fault condition within afew seconds should be almost 0.With a random bit error ratio of 10-4, the probability of deactivating the indication of fault condition within afew seconds should be higher than 0.95.Note - The activating and the deactivating period specified as “a few seconds“ is
20、 intended to be in the order of4 to 5 seconds.4.2 Consequent actionsFurther to the detection of a fault condition, appropriate actions should be taken as specified in Table 2/G.737.The consequent actions are as follows:4.2.1 Prompt maintenance alarm indication generated to signify that performance i
21、s below acceptable standards andmaintenance attention is required locally. When the AIS at the 2048 kbit/s inputs (I0, E1) is detected (see General Notesbelow to 4.2), the prompt maintenance alarm indication associated with loss of frame alignment (see 4.1.4) andexcessive error ratio (see 4.1.5) sho
22、uld be inhibited, while the rest of the consequent actions are in accordance withthose associated in Table 2/G.737 with the two fault conditions.Note - The location and provision of any visual and/or audible alarm activated by the alarm indications given in 4.2.1 is left to the discretion of each Ad
23、ministration.4.2.2 AIS applied to E2or E3outputs (see General Notes below to 4.2). This action should be taken as soon aspossible and not later than 2 ms after the detection of the fault condition.4.2.3 AIS applied to relevant time slots in the composite 2048 kbit/s output signal at insertion side (
24、I1) if supervisionof the incoming I2and I3signal is provided.4.2.4 Inhibition of I2or I3digital information insertion.4.2.5 Both 2048 kbit/s signals are bypassed.Note - The provision of this consequent action depends on the type of application of this equipment in anetwork and therefore is not manda
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