ITU-R REPORT SM 2048-2004 Use of the x dB bandwidth criterion for determination of spectral properties of a transmitter in the out-of-band domain《用于测定带外域中的发射机光谱性能的xdB带宽标准的使用》.pdf
《ITU-R REPORT SM 2048-2004 Use of the x dB bandwidth criterion for determination of spectral properties of a transmitter in the out-of-band domain《用于测定带外域中的发射机光谱性能的xdB带宽标准的使用》.pdf》由会员分享,可在线阅读,更多相关《ITU-R REPORT SM 2048-2004 Use of the x dB bandwidth criterion for determination of spectral properties of a transmitter in the out-of-band domain《用于测定带外域中的发射机光谱性能的xdB带宽标准的使用》.pdf(50页珍藏版)》请在麦多课文档分享上搜索。
1、 Rep. ITU-R SM.2048 1 REPORT ITU-R SM.2048 Use of the x dB bandwidth criterion for determination of spectral properties of a transmitter in the out-of-band domain (2004) 1 Description of the approach 1.1 A method, used by some administrations, is described for specifying and measuring the following
2、spectral properties of transmitters in the out-of-band (OoB) domain ( 1.2 of Recommendation ITU-R SM.1541 refers): the bandwidth of a transmitter emission beyond which OoB emission begins, and OoB emissions as such. 1.2 The transmitter spectral properties indicated in 1.1 are specified and measured
3、on the basis of a single criterion: the x dB bandwidth ( 1.14 of Recommendation ITU-R SM.328 refers). 1.3 The bandwidth of a transmitter emission is specified and measured on the basis of 30 dB occupied bandwidth, Bc. 1.4 OoB emissions are specified and measured using values of bandwidths of their s
4、pectra obtained at the 40 dB (B40), 50 dB (B50) and 60 dB (B60) levels, and additionally at 35 dB (B35) level for certain classes of emissions, and they are compared with relevant value for the 30 dB occupied bandwidth, Bc, and through it with the necessary bandwidth, Bn. 1.5 For certain classes of
5、radar emissions only OoB bandwidths starting from B40are given as the only available at the moment. On the other hand, for some classes of radar emissions bandwidths of in-band spectra at level 20 dB (B20) are additionally presented for better characterization of spectral properties of emissions in
6、border area between in-band and OoB spectra. In other separate cases other x dB levels are also used for the same purpose. 1.6 Data of Tables 1-3 can be also used for purposes of radio monitoring by procedures given in Recommendation ITU-R SM.443. 2 Terms and definitions Terms and definitions used h
7、erein are those given in the Radio Regulations (RR) and in Recommendation ITU-R SM.328. 3 Emission classes Classes of emissions are provided in RR Appendix 1. 4 Requirements concerning 30 dB occupied bandwidth and OoB emissions 4.1 The basis for specifying 30 dB bandwidth and OoB emissions is the ne
8、cessary bandwidth, Bn; it is determined using the formulas in Table 1 based on values given in Recommendations ITU-R SM.328, ITU-R SM.853 and ITU-R SM.1138. In calculating the necessary bandwidth, the modulation parameters provided in these requirements for the class of emission and transmitter type
9、 in question must be used. Symbols and abbreviations for types of modulation in this Report are 2 Rep. ITU-R SM.2048 explained in Annex 5. The figures, units and remarks in Table 1 are based on the experience of the administrations mentioned in 1. 4.2 The requirements concerning bandwidths of emissi
10、ons are determined using the formulas in Table 1 and correspond to the values of 30 dB bandwidth, Bc, specified and measured with respect to the defined 0 dB (reference) level. 4.3 The requirements concerning OoB emissions are given in the form of bandwidths of their spectra at fixed x dB levels, wh
11、ere x values are 35, 40, 50 and 60 dB (and corresponding bandwidths are 35, 40, 50and 60) with respect to the defined 0 dB (reference) level. Section 5.27 explains how the reference level is determined. The formulas in Table 1 are used to specify bandwidth values at those x dB levels. By joining poi
12、nts having as their ordinate the dB levels and as their abscissa the logarithm of the frequency separation from the carrier, a limiting mask for emissions in the OoB domain can be obtained. 4.4 It can be also required that measured values of the 30 dB bandwidth and of bandwidths of OoB spectra, as d
13、efined in 4.3, should not exceed the specified values of those parameters by more than 10%; this figure includes the measurement uncertainty associated with the method described in 5. 4.5 The requirements concerning OoB emissions of HF transmitters on board aircraft operating in the classes of emiss
14、ions H2BBN, H3EJN, J3EJN, J7BCF and JXX-(1)are listed in Table 2. 4.6 The requirements concerning OoB emissions of transmitters of the maritime mobile service operating in the classes of emissions H2BBN, H3EJN, J3EJN and R3EJN are given in Table 3. (1)Hyphens are used to indicate unused additional p
15、arameters in the designation of the class of emissions (see Annex 5). Rep. ITU-R SM.2048 3 TABLE 1 Calculation of 30 dB bandwidth and bandwidths of OoB spectra Calculation of: Class of emission Additional characteristics Necessary bandwidth Bn(Hz) 30 dB occupied bandwidth, Bc, and bandwidths of OoB
16、spectra (Hz) Remarks 1. Amplitude modulation 1. Signal with quantized or digital information Transmitters in the mobile service Transmitters in the land and maritime mobile service 100 W Bn = Kfade Kfade= 5 for links with fading Kfade= 3 for links without fading Bc30= Bn40 = 1.3Bc50 = 1.6Bc60 = 2Bc
17、Transmitters in the land and maritime mobile service 100 W Bn = 5 Bc30= 7 Bc = 1.4Bn40 = 1.86BcThe coefficient Kfadeis determined in the technical instructions for various types of transmitter, depending on transmitter function and the frequency band used Telegraphy, continuous wave A1AAN, A1BBN Air
18、craft transmitters in the aeronautical mobile service Bn = 5 Bc30= 7 Bc = 1.4Bn40 = 1.86Bc50= 3.3Bc60= 5.8BcRequirements apply for manipulation speeds below 20 baud; for speeds above 20 baud limits are introduced in consultation with the customer Bn = 5B Bc30= 1.4 Bn= 7B 40= 1.4Bc50= 2.5Bc60= 4.5Bc2
19、5= BnBinary amplitude-shifted carrier A1D Radio link Bn = KfadeB Kfade= 3 for links without fading Kfade= 5 for links with fading Bc30 = 1.05Bn40= 1.3Bc50= 1.6Bc60= 2BcVoice-frequency telegraphy A2AAN, A2BBN Bn = 2FU+ 5 Bc30= 2FU+ 6.8 40 = 2FU+ 13 4 Rep. ITU-R SM.2048 TABLE 1 (continued) Calculation
20、 of: Class of emission Additional characteristics Necessary bandwidth Bn(Hz) 30 dB occupied bandwidth, Bc, and bandwidths of OoB spectra (Hz) Remarks Multichannel telegraphy A7B, A7D Bn = 2chBc30= Bn40= 1.3Bc50= 1.6Bc60= 2BcBn = 2FU + 5 Bc30 = Bn40 = 1.25Bc50 = 1.55Bc60 = 2BcVoice-frequency telegrap
21、hy, single sideband, full carrier H2BBN H2BFN Selective calling signal using sequential single-frequency code Bn = FUBc30= Bn40 = 1.25Bc50 = 1.55Bc60 = 2BcDoes not apply to transmitters of the aeronautical and maritime mobile service, the requirements for which are given in Tables 2 and 3 respective
22、ly Single-sideband telegraphy, suppressed carrier J2A-(1) Bn = 5 Bc30= Bn40 = 1.3Bc60 = 2BcNarrow-band voice-frequency telegraphy J2B, J2D Maritime mobile service NBPM Bn = 1.1B Bc30= 2.5 40= 2Bc50= 2.8Bc60= 3.6BcBn = 5 Bc30= Bn40= 1.3Bc50= 1.6Bc60= 2BcVoice-frequency telegraphy, single sideband, su
23、ppressed carrier J2BBN Secondary multiplexing of channel formed by single-sideband transmitter with suppressed carrier and voice packets on 1 kHz or 1.6 kHz subcarrier Bn = 5 Bc30= 1.36Bn= 6.8B 40= 1.9BcApplies to transmitters in the land mobile service 100 W Rep. ITU-R SM.2048 5 TABLE 1 (continued)
24、 Calculation of: Class of emission Additional characteristics Necessary bandwidth Bn(Hz) 30 dB occupied bandwidth, Bc, and bandwidths of OoB spectra (Hz) Remarks Voice-frequency telegraphy, single sideband, suppressed carrier J2BBN 2-position code without error correction, transmitters in the land m
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