ITU-T O 111-1988 FREQUENCY SHIFT MEASURING EQUIPMENT FOR USE ON CARRIER CHANNELS《频移测量设备 用于传送渠道-规格为测量设备(第4研究组)共6页》.pdf
《ITU-T O 111-1988 FREQUENCY SHIFT MEASURING EQUIPMENT FOR USE ON CARRIER CHANNELS《频移测量设备 用于传送渠道-规格为测量设备(第4研究组)共6页》.pdf》由会员分享,可在线阅读,更多相关《ITU-T O 111-1988 FREQUENCY SHIFT MEASURING EQUIPMENT FOR USE ON CARRIER CHANNELS《频移测量设备 用于传送渠道-规格为测量设备(第4研究组)共6页》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 / TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU30%#) amended at Melbourne, 1988)1 GeneralThe equipment described below is compatible with the measuring method described in Annex A to thisRecommendation.2 Principle of operationThe instrument shall be capab
2、le of measuring the error in the reconstituted frequency of a carrier channel in thefollowing modes:Test 1: Measurement of frequency shift A B ( Hz): transmitting from A and measuring at B (seeFigure 1/O.111)The sinusoidal test frequencies having a 2 : 1 harmonic relationship are transmitted simulta
3、neously from A. AtB these two test signals, each shifted in frequency by an amount Hz, are modulated together in such a way asto detect , the frequency shift in the AB direction.Test 2: Measurement of loop frequency shift ( + Hz) transmitting and measuring at A with the channelslooped at B (see Figu
4、re 2/O.111)This test is carried out in a similar manner to Test 1 and the loop frequency shift ( + Hz) is detected.d01-scFIGURE 1/O.111.D01 =2 Fascicle IV.4 - Rec. O.111d02-scFIGURE 2/O.111.D02 =There may be a need to measure the frequency shift from B to A while the operator is still located at poi
5、nt A.This measurement can be accomplished in two ways:Test 3a: Measurement of frequency shift B A ( Hz) transmitting and measuring at A with B looped via aharmonic producing unit see Part a) of Figure 3/O.111A sinusoidal test frequency is transmitted from A and received at B where it passes through
6、a harmonicproducing unit. This received signal and its second harmonic are then returned to A, both undergoing afrequency shift of Hz where they are modulated together in such a way as to detect , the frequency shift inthe B A direction.Test 3b: Measurement of frequency shift B A, transmitting and m
7、easuring at A with an instrument at B,which sends out two test tones having harmonic relationship as in Test 1, initiated by receiving a single1020-Hz tone from A see Part b) of Figure 3/O.111.A sinusoidal test signal having a frequency of 1020 Hz is transmitted from A and received at B. If the rece
8、iverdetects only a single tone at B, a generator producing 1020 Hz and 2040 Hz (harmonic relationship) isconnected to line B A, enabling the frequency shift measurement to be made in that direction.If the receiver at B detects a measuring signal consisting of the two test tones 1020 Hz and 2040 Hz (
9、leveldifference 6 dB), the line is looped back at B automatically allowing the measurement described as Test 2see Part c) of Figure 3/O.111.The use of the frequency shift measuring equipment for Tests 3a and 3b requires the transmission of a single1020-Hz tone from A B. Therefore this facility could
10、 be provided as an option for the instrument for this type ofmeasurement. The specification of the equipment at B (harmonic producer or switched generator) should be left open forbilateral agreement between Administrations.Fascicle IV.4 - Rec. O.111 33 Transmitting equipmentThe equipment shall trans
11、mit sinusoidal test signals as follows:3.1 Frequenciesa) 1020 and 2040 Hz 2%. These two frequencies shall be in exact harmonic relationshipNote If this transmitting equipment is intended to be used in phase jitter measurements, an accuracy of 1%will be required.b) optional additional output for Admi
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