ITU-T G 792-1988 Characteristics Common to All Transmultiplexing Equipments - General Aspects of Digital Transmission Systems Terminal Equipments (Study Groups XV and XVIII) 13 pp《.pdf
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1、CCITT FASCICLE 111-4 89 4862593 0503763 6 = 2 Transmultiplexer application The application on transmultiplexers for the interconnection of digitaI and analogue networks is illustrated in Supplement No. 28. Reference CCIT Recommendation Recommendations concerning translating equipments, Vol. III, Rec
2、. G.233. i Recommendation G.792 CHARACTERISTICS COMMON TO ALL TRANSMULTIPLEXING EQUIPMENTS (Geneva, 1980; further amended) The CCIT, recommends dation G.791. that the characteristics below be respected by all the transmultiplexing equipments defined in Recommen- Recommendation 0.133 contains informa
3、tion about test equipment. Account should be taken of the measurement accuracy provided by test equipment designed in accordance with that Recommendation. The following specifications are based on ideal measuring equipment. Therefore, they do not include any margin for measurement errors. To avoid l
4、evel errors produced as a result of the use of test frequencies which are sub-multiples of the PCM sampling rate, the use of integer sub-multiples of 8 kHz should be avoided. Where a nominal reference frequency of 1020 Hz is indicated (measurement of attenuation/frequency distortion and adjustment o
5、f relative levels), the actual frequency should be 1020, +2 to -7 Hz in accordance with Recommendation 0.6 18. 1 Coding law Transmultiplexers should satisfy Recommendation G.711, 0 3. 2 Sampling rate of PCM channels The nominal sampling rate of PCM channels is 8000 Hz f 50 lop6 according to Recommen
6、da- tion G.711, 8 2. 3 Amplitude limitation of PCM channels In accordance with Recommendation G.711, 4 4, the theoretical load capacity of PCM channel is +3.14 dBmO for the A-law and +3.17 dBmO for the F-law. 4 Accuracy of the analogue virtual carriers The analogue virtual carriers should satisfy th
7、e Recommendation cited in i. 5 Saturation level at the input of the analogue group The transmultiplexers should be able to accept at their analogue inputs, levels corresponding to the equivalent peak powers defined in Table 3/G.223 5 (for example, + 19 dBmO for a group and + 20.8 dBmO for a supergro
8、up). Fascicle 111.4 - Rec. G.792 575 -. CCITT FASCICLE 111.4 89 4862593 O503764 B Note - Attention is drawn to the possibility of using a transmultiplexer on the interpolated side of a digital speech interpolation (DSI) device. Given an interpolation rate of 2, this would lead to equivalent peak pow
9、ers of 19.5 dBmO for TMUX-P and 21.2 dBmO for TMUX-S (see Table 3/G.223 5). 6 Methods of measuring quality in the audio band The various possible methods of measuring quality characteristics in the audio band are indicated in Figure 1/G.792. Category A B C D E F Measuring method TMUX Analogue carrie
10、r d- frequency TMUX I-b PCM multiplexed signal Group modulator* Channel 7 modulator s -Audio frequency s-s-+ TMUX FIT TIF I I I I L,J R -I, R A * Group modulator is not required for the TMUX-P TMUX - Analogue carrier frequency PCM multiplexed signal Analogue carrier Analogue carrier multiplex freque
11、ncy signal frequency Analogue PCM multi- -+ plexed t signal frequency - FIT -+ PCM multi- carrier plexed - TIF + signal TIF TDM-to-FDM conversion FIT FDM-to-TDM conversion S Sender R Receiver FIGURE 1/G.792 Block diagrams of measuring methods for transmultiplexers Remarks Measurement in analogue car
12、rier frequency Measurement in PCM multiplexed level Measurement in audio frequency Measurement for one direction in PCM multiplexed level and analogue carrier frequency Measurement in analogue carrier frequency Measurement in PCM multiplexed level CCnT- 2781 I 576 Fascicle III.4 - Rec. G.792 CCITT F
13、ASCICLE 111.4 89 = 4862591 0503765 T When method B cannot be used because it requires digital signal generators and analyzers, which certain Administrations do not yet possess, method C can be used provisionally looping of the digital ports, use of the terminals of auxiliary analogue channels (and p
14、ossibly group modulators), assumption of the additivity of impairments and deduction of the impairments at the terminals of the channels (and possibly modulators) previously measured. Method D corresponds in fact to four possible methods, depending on whether the emission of the test signal and its
15、detection takes place on the analogue side or the digital side. Methods E and F are used for crosstalk measurements. For the sake of the convenience and precision of the measurements, it is desirable that the regulation, when included in the transmultiplexer, can be blocked with a gain equal to unit
16、y. The specifications in $9 7 to 23 assume such blocking. 7 Attenuation distortion in the voice-frequency band as a function of frequency The measuring method is method A. The variation of the attenuation of each channel of a transmultiplexer as a function of frequency must remain within the limits
17、of the mask in Figure 2/G.792. The level of emission is -10 dBmO; the reference frequency is 1020 Hz. 8 Group delay 8.1 Absolute value of the group delay The measuring method is method A. The absolute value of group delay defined as the minimum value of group delay in the speech band 300-3400 Hz sho
18、uld remain less than 3 ms for all the channels of a transmultiplexer. Note - When the transmultiplexer is used for satellite digital communication at the earth station the minimum value of the group propagation time in the audiofrequency band may be increased from 3 ms to 6.5 ms. In all other cases,
19、 the value of 3 ms should be complied with. 2001 400 600 1020 2000 2400 3000 3400 3600 4000 Hz 300 T161011Od9 Frequency (f) FIGURE 2E.792 Attenuation distortion mask as a function of the frequency to be observed for all channels of a transmultiplexer Fascicle III.4 - Rec. G.792 577 r -. CCITT FASCIC
20、LE 111.4 89 m 4862593 05037bb 3 m 8.2 Group-delay distortion The measuring method is method A. The group-delay distortion should not exceed the limits of the mask in Figure 3/G.792. The minimum group delay is taken as a reference; the power level at the input is O dBmO. O 500 600 1000 2000 2600 2800
21、 Hz T1810120d9 Frequency (f) FIGURE 3/G.792 Mask of group-delay distortion as a function of frequency 9 Noise 9.1 Idle channel noise, with all channels-idle The measuring method is method B. When a PCM signal corresponding to amplitude O for the plaw and the number 1 for the A-law in all channels of
22、 the transmultiplexer is applied to the digital input of the transmultiplexer, the psophometric noise measured over any channel at the digital output should not exceed -65 dBmOp. The measurement is conducted in the presence of pilots. 9.2 Channel noise, with all channels loaded except the one measur
23、ed The measuring method is method A. In this case an intermodulation measuring set-up using the white noise method is employed, as described in the Recommendation cited in 6. The level of emission of the noise signal being equal to the conventional load of the FDM signal considered (the Recommendati
24、on cited in 7: 3.3 dBmO for the group, 6.1 dBmO for the supergroup), the noise measured in any given measuring slot should not exceed -62.5 dBmOp (Le., -60 dBmO in a 3100 Hz band). The centre frequencies of the specified measuring slots (CCIT Recommendation G.230 8 and CCIR Recommendation 482 9) app
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