ITU-T G 744-1993 SECOND ORDER PCM MULTIPLEX EQUIPMENT OPERATING AT 8448 kbit s《工作在8448kbit s的二次群脉冲编码调制(PCM)复用设备》.pdf
《ITU-T G 744-1993 SECOND ORDER PCM MULTIPLEX EQUIPMENT OPERATING AT 8448 kbit s《工作在8448kbit s的二次群脉冲编码调制(PCM)复用设备》.pdf》由会员分享,可在线阅读,更多相关《ITU-T G 744-1993 SECOND ORDER PCM MULTIPLEX EQUIPMENT OPERATING AT 8448 kbit s《工作在8448kbit s的二次群脉冲编码调制(PCM)复用设备》.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%.%2!,G0G0!30%#43G0G0/ amended at Geneva, 1980 and at Melbourne, 1988)1 General characteristics1.1 Fundamental characteristicsThe encoding law used is the A-law as specified in Recommendation G.711. The samplin
2、g rate, load capacityand the code are also specified in that Recommendation.The number of quantized values is 256.Note - The inversion of bits 2, 4, 6 and 8 is covered by the encoding law and is applicable only to voice-channeltime slots.1.2 Bit rateThe nominal bit rate is 8448 kbit/s. The tolerance
3、 on this rate is 30 parts per million (ppm).1.3 Timing signalIt should be possible to derive the transmitting timing signal of a PCM multiplex equipment from an internalsource, from the incoming digital signal and also from an external source.Note - Further study is required on the effect of jitter
4、of the incoming signal on the timing signal, and on themeasures to be taken in case of loss of the incoming signal or the external source.2 Frame structureRefer to 3.4.1 and 3.4.2 of Recommendation G.704 for frame structure and use of derived channel time slots.3 Loss and recovery of frame alignment
5、Loss of frame alignment should be assumed to have taken place when four consecutive frame alignment signalshave been incorrectly received in their predicted positions.When frame alignment is assumed to be lost, the frame alignment device should decide that such alignment haseffectively been recovere
6、d when it detects the presence of three consecutive frame alignment signals.The frame alignment device having detected the appearance of a single correct frame alignment signal, shouldbegin a new search for the frame alignment signal when it detects the absence of the frame alignment signal in one o
7、f thetwo following frames.4 Fault conditions and consequent actions4.1 Fault conditionsThe PCM multiplex equipment should detect the following fault conditions.4.1.1 Failure of power supply.2 Fascicle III.4 - Rec. G.7444.1.2 Failure of codec (except when using single-channel codecs)As a minimum requ
8、irement, this fault condition should be recognized when, for at least one signal level in therange -21 to -6 dBm0, the signal-to-quantizing noise ratio performance of the local codec is 18 dB or more below thelevel recommended in Recommendation G.712.4.1.3 Loss of incoming signal at the 64 kbit/s in
9、put port (time slots 67 to 70)Note 1 - The detection of this fault condition is not mandatory when channel associated signalling is used andthe signalling multiplex is situated within a few metres of the PCM multiplex equipment.Note 2 - The detection of this fault condition is not mandatory when con
10、tradirectional interfaces are used.4.1.4 Loss of the incoming signal at 8448 kbit/s.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 signal and the timing signa
11、l, then loss of either or bothshould constitute loss of the incoming signal.4.1.5 Loss of frame alignment.4.1.6 Excessive bit error ratio detected by monitoring the frame alignment signal.4.1.6.1 With a random bit error of 10-4, the probability of activating the indication of fault condition within
12、a fewseconds should be less than 10-6.With a random bit error of 10-3, the probability of activating the indication of fault condition within a fewseconds should be higher than 0.95.4.1.6.2 With a random bit error ratio of 10-3, the probability of deactivating the indication of fault condition withi
13、n afew seconds should be almost 0.With a random bit error of 10-4, the probability of deactivating the indication of fault condition within a fewseconds should be higher than 0.95.Note - The activating and the deactivating period specified as “a few seconds“ is intended to be in the order of4 to 5 s
14、econds.4.1.7 Alarm indication received from the remote end (see 4.2.3 below).4.2 Consequent actionsFurther to the detection of a fault condition, appropriate actions should be taken as specified in Table 1/G.744.The consequent actions are as follows:4.2.1 Service alarm indication generated to signif
15、y that the service provided by the PCM multiplex is no longeravailable. This indication should be forwarded at least to the switching and/or signalling multiplex equipment dependingupon the arrangements provided. The indication should be given as soon as possible and not later than 2 ms afterdetecti
16、on of the relevant fault condition.This specification, taking into account the specification given in 3 above, is equivalent to recommending thatthe average time to detect a loss of frame alignment or a loss of the incoming 8448-kbit/s signal and to give the relevantindication should not be greater
17、than 3 ms.When using common channel signalling, the indication should be forwarded to the switching equipment bymeans of a separate interface on the PCM multiplex equipment.4.2.2 Prompt maintenance alarm indication generated to signify that performance is below acceptable standards andmaintenance at
18、tention is required locally. When the Alarm Indication Signal (AIS) (see General Note below to 4.2) isFascicle III.4 - Rec. G.744 3detected the prompt maintenance alarm indication, associated with loss of frame alignment (see 4.1.5 above) andexcessive error rate (see 4.1.6 above), should be inhibite
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