ITU-R SM 1446-2000 DEFINITION AND MEASUREMENT OF INTERMODULATION PRODUCTS IN TRANSMITTER USING FREQUENCY PHASE OR COMPLEX MODULATION TECHNIQUES《使用频率、相位和综合的调制技术的发射机的互调产物的定义和测量》.pdf
《ITU-R SM 1446-2000 DEFINITION AND MEASUREMENT OF INTERMODULATION PRODUCTS IN TRANSMITTER USING FREQUENCY PHASE OR COMPLEX MODULATION TECHNIQUES《使用频率、相位和综合的调制技术的发射机的互调产物的定义和测量》.pdf》由会员分享,可在线阅读,更多相关《ITU-R SM 1446-2000 DEFINITION AND MEASUREMENT OF INTERMODULATION PRODUCTS IN TRANSMITTER USING FREQUENCY PHASE OR COMPLEX MODULATION TECHNIQUES《使用频率、相位和综合的调制技术的发射机的互调产物的定义和测量》.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、Rec. ITU-R SM.1446 1 RECOMMENDATION ITU-R SM. 1446 DEFNITION AND MEASUREMENT OF NTERMODULATION PRODUCTS N TRANSMITTER USWG FREQUENCY, PHASE, OR COMPLEX MODULATION TECHNIQUES (Question ITU-R 21 Ul) (2000) The ITU Radiocommunication Assembly, considering that intermodulation (IM) products are part of
2、the unwanted emissions (RR No. S1.146); that IM products are generated either in the radio transmission system itself and/or by interaction between a) b) different radiating elements at the same radio site; cl Appendix S3 of the RR and Recommendation ITU-R SM.329; d) e) f) IM products in an anomalou
3、s and uncontrolled way, and these will all add together at receivers; g) that the IM products due to amplitude-modulated radio transmitter are considered in Recommen- dation ITU-R SM.326: that the limits of spurious emissions cover only single- or multichannel IM products, and are prescribed by that
4、 the limits of out-of-band emissions cover only single- or multichannel IM products, and are under study; that no limits are defined for inter-transmitter IM between different systems; that there is a rapid increase of shared radio sites, and that each site can potentially radiate passive and active
5、 h) techniques , that there is a need to define methods of measurements of IM products, particularly for digital modulation noting that Report ITU-R SM.2021 contains general principles on generation of IM products and the relevant a) mitigation techniques to minimize IM, recommends 1 definitions and
6、 the relevant measurement techniques for each type of IM given in Annex 1 should be used. that when considering the types of mechanisms which generate IM products in the transmission system the 2 Rec. ITU-R SM.1446 ANNEX 1 IM products in the transmitter TABLE OF CONTENTS Page 2 1 Definitions of the
7、different IM types in the transmitter 1.1 Type 1 - Single-channel IM 3 1.2 Type 2 - Multichannel IM 4 1.3 Type 3 - Inter-transmitter IM 5 Type 4 - IM due to active antennas Type 5 - IM due to passive circuits 1.4 5 1.5 6 1.6 Transmitter IM attenuation 7 2 Radiocommunication services considerations 7
8、 3 Measurement techniques Generic measurement methods for single-channel IM measurement (Type 1) . 3.1.1 Analogue modulation 3.1.2 Digital modulations . Generic measurement methods for multicarrier IM measurement (Type 2) . 3.2.1 Descriptions of measurement methods 3.2.2 Comparison of the methods .
9、Generic measurement methods for inter-transmitter IM measurement (Type 3) 3.3.1 Principle 3.3.2 Measurement set-up . 3.1 3.2 3.3 7 7 8 8 9 9 10 11 11 12 Appendix 1 of Annex 1 - Examples of IM performance . 13 1 Definitions of the different IM types in the transmitter IM products are generated at non
10、-linearities in the transmitter output amplifier, e.g. at semiconductors, klystrons, etc., and in passive devices like combiners, circulators, connectors, etc. IM products at the frequency fl are generated by two or more unwanted signals at the frequencies fi, f2, . at non-linearities in the output
11、of a transmitter. The relation betweenfiM andfl,f2, . can be expressed very general: flM= I m1f1 + m2f2 + . I with mV= O, fl, f2, . The order of the IM product is given by n = ml + m2 + This means that the frequency for 2nd order IM products, ZM2 with n = 2, ml = m2 = 1 results inhM = I fi I f2 I an
12、d of the 3rd order ZM3 (n = 3, ml = 2, m2 = 1) inhM = I 2f1 I f2 I or in f-0? Therefore, it is important to maintain the linearity of passive circuits such as waveguides, cables and connectors. Rec. ITU-R SM.1446 7 1.6 Transmitter IM attenuation The transmitter IM attenuation is a measure of the cap
13、ability of a transmitter to inhibit the generation of signals in its non-linear elements caused by the presence of the carrier. This definition is indicated in Fig. 8 with fi as the carrier frequency having the output power PlV1) and f2 as the interfering signal having the power P2. FIGURE 8 Definit
14、ions of transmitter LM attenuation and reverse LM factor P2(f2) c- The transmitter IM attenuation, AIM, is then defined by: ZA43 25 W. Repeat steps 4 through 6. The lower of the two readings obtained in steps 6 and 8 is the IM attenuation. - Feeder Branching RF TxRx receiver filter network Transmitt
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