ITU-R BS 644-1-1990 Audio Quality Parameters for the Performance of a High-Quality Sound-Programme Transmission Chain - Section 10C - Audio-Frequency Characteristics of Sound-Broad.pdf
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1、Rec. 644-1 1RECOMMENDATION 644-1*AUDIO QUALITY PARAMETERS FOR THE PERFORMANCE OF AHIGH-QUALITY SOUND-PROGRAMME TRANSMISSION CHAIN(1986-1990)Rec. 644-1The CCIR,CONSIDERING(a) that the performance characteristics of international sound-programme circuits used for programme exchangeare based on a hypot
2、hetical reference circuit (HRC) defined in Recommendation 502;(b) that the performance of a realistic international sound-programme circuit shorter or longer than the HRC canbe derived by calculation according to rules given in Recommendation 605;(c) that the performance of the sound-programme trans
3、mission chain from the broadcasting house to the output ofthe receiver should therefore be based on a reference chain;(d) that sound-programme signals intended for international exchange are conveyed from the broadcasting houseto the international sound-programme centre (ISPC) on national circuits w
4、hich are either the same as, or similar to, thenational circuits which form part of the sound-programme transmission chain;(e) that the performance of the sound-programme transmission chain should be described by a number ofparameters;(f) that for reasons of comparison, clearly defined parameters me
5、asured using test signals, should be used;(g) that these parameters and their target values should be based on the perceptibility of the impairments by thehuman ear,UNANIMOUSLY RECOMMENDS1. that the performance characteristics of a high-quality sound-programme transmission chain should be based onth
6、e reference chain described in Annex I;2. that the performance of the reference transmission chain from the output of the broadcasting house to theoutput of the receiver should be described by the parameters listed in Annex II;3. that the limits given in Annex III be used as realistic target values
7、for these parameters;4. that for the purposes of planning the entire broadcasting chain from the microphone output to the receiveroutput, the subjective threshold values for quality parameters given in Annex IV should be taken for guidance.ANNEX IREFERENCE SOUND-PROGRAMME TRANSMISSION CHAINThe refer
8、ence sound-programme transmission chain is represented, for the purpose of this Recommendation,by Fig. 1 in which A, B, and C are 0 dBrs audio signal interface points, permitting performance comparison:A : interface between the programme source (broadcasting house) and the sound-programme circuitsys
9、tem;A-B : sound-programme circuit system comprising a single cable, radio, communication satellite oroptical-fibre section;B : interface between the sound-programme circuit and emission-reception systems;B-C : emission-reception system, comprising a single broadcasting emitter or a single cable netw
10、ork and ahigh-quality monitoring receiver under optimum conditions;C : audio signal interface at the output of the receiver._*This Recommendation, derived from Report 293 which has been cancelled, should be brought to the attention of the CMTT.2 Rec. 644-1D01-scFIGURE 1 D01 = 3 cmThe EBU CCIR, 1986-
11、90 has published Recommendation R.50 to define the polarity of acoustic signals,electrical audio signals, audio signals at connectors, magnetic signals on audio and video tapes, digital audio signals andacoustic pressure signals for loudspeakers.REFERENCESCCIR Documents1986-90: 10/313 (EBU).ANNEX II
12、LIST OF AUDIO QUALITY PARAMETERSThe audio quality parameters listed below are those which are considered to be the most important in theanalogue environment. Some parameters are also appropriate for connections incorporating digital systems, but somefurther parameters need to be specified for testin
13、g these digital systems.*All test signals should be at the measurement level (see Recommendation 645) unless otherwise stated. Forstereo, measurements should be made in both A and B channels.1. Nominal bandwidthThe effective transmitted frequency band (for both A and B channels, in the case of stere
14、o).2. Amplitude/frequency responseThe response should be expressed relative to the level at the reference frequency of 1 kHz.3. Group-delay variationThe results of measurements throughout the nominal bandwidth should be expressed relative to the minimumgroup delay.4. Non-linear distortion*Total harm
15、onic distortion (THD) may be measured using a single-tone test signal at +9 dBu0s, at frequenciesin the range from 40 Hz to 1 kHz, and the result expressed as a “separation” value (i.e. the difference in level betweenthe test signal and the harmonics, expressed in dB)._*Administrations are requested
16、 to study quality parameters and testing methods for digital systems, and contribute to the work ofthe CCIR under Study Programme 51B/10. Report 1070 is alo relevant.*Administrations are requested to consider these and other suitable distortion measurement methods, and contribute theirconclusions to
17、 the CCIR under Study Programme 50E/10.Rec. 644-1 3Distortion may, alternatively, be measured using the total difference frequency (TDFD) method Thiele, 1975.This is an intermodulation test in which the test signal comprises two tones at frequencies chosen so that second-orderand third-order intermo
18、dulation products (i.e. one of each) occur close in frequency, and may be measured together by ameter with a selective filter. Tests in the UK CCIR, 1986-90a have shown that the TDFD method is less sensitive tonoise than THD, and is not restricted to the use of test signals at frequencies below 5 kH
19、z. This could be important whentesting pre-emphasised connections, although care must be taken to avoid the possibility of overloading resulting fromthe pre-emphasis.The TDFD method is described in Annex V.The duration for which the test signals are transmitted should be restricted in accordance wit
20、h the appropriateCCITT Recommendations of the N series.5. Error in reconstituted frequencyThe error in reconstituted frequency should not exceed the values in Annex III, for individual channels.For stereo, any differential frequency shift between A and B channels is unacceptable.A sensitive measurin
21、g method is described in Thiele and Bonner, 1985.6. Error in amplitude/amplitude responseA 1 kHz tone is applied to the input of the transmission chain at +9 dBu0s and at 31 dBu0s alternatively. Theoutput levels should be measured selectively, and the difference should be within the limits specified
22、 in Annex III.The duration for which the test signal is transmitted should be restricted in accordance with the appropriateCCITT Recommendations of N series.7. Level stabilityThe difference in the level of a constant reference signal, at the measurement level, applied to the input of thetransmission
23、 chain, from its nominal level should be determined for a 24 h period. This difference may vary over the24 h period, and include a fixed adjustment error.For stereo, the level stability should be determined concurrently for both A and B channels.8. Noise (and single-tone interference)Weighted noise
24、voltage level (and, where appropriate, single-tone interference voltage level) is measured inaccordance with Recommendation 468. The permitted maximum signal-to-(weighted) noise ratio (PMS/N, expressedin dB) is determined as the difference between the permitted maximum signal (PMS) and the weighted
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