ITU-T N 73-1988 MAINTENANCE OF PERMANENT INTERNATIONAL TELEVISION CIRCUITS LINKS AND CONNECTIONS《维护长期性国际电视线路 联系和连接-维护国际声音节目和电视传输电路的第4研究组 13页》.pdf
《ITU-T N 73-1988 MAINTENANCE OF PERMANENT INTERNATIONAL TELEVISION CIRCUITS LINKS AND CONNECTIONS《维护长期性国际电视线路 联系和连接-维护国际声音节目和电视传输电路的第4研究组 13页》.pdf》由会员分享,可在线阅读,更多相关《ITU-T N 73-1988 MAINTENANCE OF PERMANENT INTERNATIONAL TELEVISION CIRCUITS LINKS AND CONNECTIONS《维护长期性国际电视线路 联系和连接-维护国际声音节目和电视传输电路的第4研究组 13页》.pdf(15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%.!.#%G0G0/ the titles of those test-signal elements with the reference designations are given below:Field bar Signal A Figures A-1/N.73 and A-2/N.73Sine-squared pulse Signal B1 Figures A-3/N.73 and A-4/
2、N.73Luminance bar Signal B2 or, B3 Figures A-3/N.73 and A-4/N.73Multiburst Signal C Figures A-5/N.73 and A-6/N.73Staircase Signal D1 and D2 Figures A-7/N.73 and A-8/N.73Composite pulse Signal F Figures A-9/N.73 and A-10/N.73Chrominance bar Signal G1 (625-lines only) Figure A-11/N.73Three level chrom
3、inance bar Signal G2 (625-lines only) Figure A-11/N.73Three level chrominance bar Signal G (525-lines only) Figure A-12/N.733 Test equipment3.1 GeneratorsCCIR Recommendation 473 2 defines the insertion test signals required for measurement purposes. Theassembly of test signal elements in test lines
4、is also referred to in Recommendation N.67 and most modern test signalgenerators can originate the test signals, either as insertion test signals or as full-field test signals. In the latter modemeasurements can be carried out at standard values of average picture level (APL).The assembly of test si
5、gnal elements in the test lines is sufficient for the measurement of the large majority oftelevision circuit parameters, that is, distortions occurring at line frequency and above. However, additional test signalsare needed for low and very low-frequency measurements. A field bar is required for the
6、 measurement of field timedistortions and, for the measurement of long-time waveform distortion, a signal is required which is switched at intervalsof a few seconds between low and high APLs. (For further details see CCIR Report 636 3.)3.2 Measurement equipmentThe measurement equipment may consist o
7、f: an oscilloscope or television waveform monitor with additional equipment for making nonlinearitymeasurements1);_1)A line selector for selecting insertion test lines for display with older type waveform monitors or oscilloscipes is commerciallyavailable.2 Fascicle IV.3 - Rec. N.73 modern televisio
8、n waveform monitors equipped with line-selection and means for measuring nonlinearitydistortion; automatic measurement equipment.4 Measurement definitionsCCIR Recommendations 567 1 and 569 4 define the measurements that may be made on television circuits.There are slight differences in the way certa
9、in similar parameters are defined, for example, insertion gain and luminancebar amplitude, and differences in the way the results are expressed, for example, luminance bar amplitude and luminancebar amplitude error. To standardize routine maintenance measurements, it is recommended that the definiti
10、ons given inRecommendation 569 4 be used for maintenance purposes whenever possible. The results are then easier to analyzebecause the result of a measurement is zero for an undistorted parameter.5 Access pointsMeasurements are taken at television signal access points which are well-defined points a
11、ssociated with theinput and output of a television circuit. To suit the characteristics of the measurement equipment, the standardlevel/impedance at the access point should be 1 volt peak-to-peak into 75 ohms. The return loss at the access point shallbe better than 30 dB.The access point may be the
12、point of interconnection or may be connected to it by a distortion-free circuithaving zero loss or gain.For flexibility, and to ensure that measured parameters are comparable to transmission parameters, it isnecessary that the interconnection system in the ITC should handle programme and test signal
13、s in the same way.Figure 1/N.73 shows one method of realizing that objective.d01-scFIGURE 1/N.73.D016 Routine verification of test equipmentTo ensure that test equipment errors will not lead to incorrect adjustment of a television circuit, the testequipment should be verified regularly.The connectio
14、n between the test signal generator and the measurement equipment, via the interconnectionsystem, should be verified at intervals of, say, three months and the results should be within the limits given inTable 1/N.73.Fascicle IV.3 - Rec. N.73 3TABLE 1/N.73Limits for measurement chains7 Maintenance l
15、imitsThe figures given in Table 2/N.73 showing the maintenance limits are based on the design objectives forhypothetical reference circuits given in CCIR Recommendation 567 1 but refer to international television circuits,nominally one-third of the length of the hypothetical reference circuit, betwe
16、en terminal ITCs which are normally inadjacent countries. These limits are expected to apply for most of the time but may be exceeded for part of the time.Hence, maintenance staff must exercise judgement on the action to be taken when a circuit is outside the maintenancelimits for any parameter. If
17、the results are well outside the limits, for example, if the error is greater than twice the limitvalue or the signal-to-noise ratio is 3 dB worse than the limit value, the fault should be located and corrected. On theother hand, if the limits are only exceeded by a relatively small amount, correcti
18、ve action should not be carried outunless a given parameter exceeds the maintenance limits in two successive months.Maintenance limits for circuit sections which are different in length and construction from the circuit sectionequal to one third of the hypothetical reference circuit may be derived b
19、y the application of the Laws of Additionspecified in CCIR Recommendation 567 1 to the limits quoted in Table 2/N.73, but the precautions in 10 should benoted.Parameter LimitsLuminance bar amplitude error 1%Bar tilt/Base line distortion 1%2T pulse/bar ratio error 2%Peak differential gain 1%Peak diff
20、erential phase 1Chrominance/luminance gain inequality 2%Chrominance/luminance delay inequality 5 nsSignal-to-continuous-noise ratio (unified weighted) 65 dB4 Fascicle IV.3 - Rec. N.73TABLE 2/N.73Maintenance limits for permanent international television circuitsItem(Note 12)Parameter Test waveforms(s
21、) Maintenance limits525 6251 Luminance bar-error(Note 1)B2 or B3 11IRE units 11%( 1 dB)2 Variation of luminance bar-error(e.g. 1 s)B2 or B3 3IRE units 2%( 0,2 dB)3 Variation of luminance bar-error(e.g. 1 hour)B2 or B3 8IRE units 11%( 1 dB)4 Signal-to-continuous-weighted-noise ratio No input signal(N
22、otes 1, 3)or“quiet” line(Notes 2, 4) 56 dB 52 dB(Note 10)5 Signal-to-periodic-noise ratio (power supplyfrequency 0,1 kHz)(Note 2)No input signal 35 dB(Note 5)6 Signal-to-periodic-noise ratio (1 kHz fc)(Note 2)No input signal 55 dB7 Signal to impulsive noise ratio (Note 2) No input signal 25 dB8 Lumi
23、nance-non-linearity (Note 1) D1 3% 10%(Note 6)9 Chrominance gain non-linearity (Note 2) G or G2 4% 7%(Note 6)10 Chrominance phase non-linearity (Note 2) G or G2 4 5 (Note 6)11 Peak differential gain (Note 1) D2 10% 8%(Note 6)12 Peak differential phase (Note 1) D2 3 5 (Note 6)13 Chrominance-luminance
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