ITU-T O 42-1988 EQUIPMENT TO MEASURE NONLINEAR DISTORTION USING THE 4-TONE INTERMODULATION METHOD《仪器测量非线性失真用4个音互调的方法-规格为测量设备(第4研究组)5页》.pdf
《ITU-T O 42-1988 EQUIPMENT TO MEASURE NONLINEAR DISTORTION USING THE 4-TONE INTERMODULATION METHOD《仪器测量非线性失真用4个音互调的方法-规格为测量设备(第4研究组)5页》.pdf》由会员分享,可在线阅读,更多相关《ITU-T O 42-1988 EQUIPMENT TO MEASURE NONLINEAR DISTORTION USING THE 4-TONE INTERMODULATION METHOD《仪器测量非线性失真用4个音互调的方法-规格为测量设备(第4研究组)5页》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 / TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU30%#)&)#!4)/.3G0G0&/2G0G0-%!352).G0G0%15)0-%.4%15)0-%.4G0G04/G0G0-%!352%G0G0./.,).%!2$)34/24)/.G0G053).G0G04(%G0G0 G134/.%).4%2-/$5,!4)/.G0G0-%4(/$)45G134G0G0RecommendationG0G0 (Extract from the “LUEG0“OOK)NO
2、TES1 ITU-T Recommendation O.42 was published in Fascicle IV.4 of the Blue Book. This file is an extract from theBlue Book. While the presentation and layout of the text might be slightly different from the Blue Book version, thecontents of the file are identical to the Blue Book version and copyrigh
3、t conditions remain unchanged (see below).2 In this Recommendation, the expression “Administration” is used for conciseness to indicate both atelecommunication administration and a recognized operating agency. ITU 1988, 1993All rights reserved. No part of this publication may be reproduced or utiliz
4、ed in any form or by any means, electronic ormechanical, including photocopying and microfilm, without permission in writing from the ITU.Fascicle IV.4 - Rec. O.42 1Recommendation O.42Fascicle IV.4 - Rec. O.42EQUIPMENT TO MEASURE NONLINEAR DISTORTIONUSING THE 4-TONE INTERMODULATION METHOD(Malaga-Tor
5、remolinos, 1984)1 IntroductionNonlinear distortion impairments on analogue circuits are normally evaluated be measuring the harmonicfrequency signals resulting from a sinusoidal test signal, or by measuring intermodulation frequency signals resultingfrom the interaction of a multitone test signal. S
6、tudies and experience have shown that the harmonic distortion methodmay severely underevaluate the amount of nonlinearity present on a circuit under certain circumstances. When multiplesources of nonlinearity are present on a circuit, harmonic products may tend to cancel each other, whereas theinter
7、modulation products generated by a complex data signal may not cancel and may significantly impair thetransmitted message. This effect has become increasingly important with the advent of higher bit rates and withmultilevel/multiphase encoded data signals.The following intermodulation method of test
8、ing for nonlinear distortion using a 4-tone test signal isrecommended in order to achieve improved accuracy. This method measures certain 2nd and 3rd order distortionproducts resulting from the intermodulation of the tones in the prescribed test signal. The frequencies of the four testsignal tones a
9、re selected to generate 2nd and 3rd order intermodulation products that occur in the passband of ananalogue circuit and are easily separated from the applied test signal and measured. Four tones are used in order toachieve a test signal whose amplitude distribution is approximately Gaussian.2 Princi
10、ple of operationIntermodulation distortion can be broadly defined as the modulation of the components of a complex wavewith each other, as a result of which new components are produced that have frequencies equal to the sums anddifferences of integral multiples of those of the components of the orig
11、inal complex wave. Normally the 2nd and 3rdorder intermodulation components are sufficient to evaluate the circuit nonlinearity.A test signal is used which consists of four equal-level tones. Two of the tones are nominally 6 Hz apartcentred at 860 Hz and the other two are nominally 16 Hz apart centr
12、ed at 1380 Hz. To evaluate 3rd order distortion, thetotal power due to the six 3rd order intermodulation products in a narrow band centred at 1.9 kHz is measured andexpressed in dB below the received signal. For 2nd order distortion, the power due to the four 2nd orderintermodulation products in a n
13、arrow band centred at 520 Hz and the power nominally due to the four 2nd orderintermodulation products in a narrow band centred at 2240 Hz are also measured. These two 2nd order distortionproduct powers are then averaged and the result expressed in dB below the received signal.Second order intermodu
14、lation distortion is defined as follows:Intermod2nd= 20 log10(V4T/V2nd) dBwhere:V4Tis the r.m.s. voltage of the 4-tone signal, andVVV22nd22=+() ( )522where:V5is the r.m.s. voltage in the frequency band centred at 520 Hz, andV22is the r.m.s. voltage in the frequency band centred at 2240 Hz.Third orde
15、r intermodulation distortion is defined as follows:Intermod3rd= 20 log10 (V4T/V19) dB2 Fascicle IV.4 - Rec. O.42where:V4Tis the r.m.s. voltage in the 4-tone signal, andV19is the r.m.s. voltage in the frequency band centred at 1900 Hz.Depending on the relative levels of the intermodulation distortion
16、 products and noise on the circuit, the levelof the signals measured in the receiver with the 4-tone test signal may be due in part or entirely to circuit noise. Todetermine the contribution of this noise, an additional measurement is made using a 2-tone signal consisting of the highpair or low pair
17、 of tones at the same power level as the 4-tone signal. The resulting signal-to-noise level readings areused to correct the observed distortion readings. The correction may be accomplished automatically in the test set or bythe operator.3 Specific requirementsThe following provides a minimum set of
18、requirements that should be met by an instrument used to measurenonlinear distortion using the “4-tone” intermodulation method.3.1 Transmitter3.1.1 Level accuracyThe r.m.s. signal output level error shall be less than 1 dB.3.1.2 Level rangeThe output level range shall be at least 0 to 40 dBm. Calibr
19、ated attenuator increments of 1 dB or smallershall be provided unless a level indicator is part of the test set, in which case a vernier control is acceptable.3.1.3 SpectrumThe transmitted signal shall consist of four equal-level tones. Two of the tones shall be 6 1 Hz apart centredat 860 1 Hz and t
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