ITU-R BS 450-3-2001 Transmission standards for FM sound broadcasting at VHF 《VHF的FM声音广播的传输标准》.pdf
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1、 Rec. ITU-R BS.450-3 1 RECOMMENDATION ITU-R BS.450-3 Transmission standards for FM sound broadcasting at VHF*(1982-1995-2001) The ITU Radiocommunication Assembly, recommends 1 that for FM sound broadcasting in band 8 (VHF) the following transmission standards should be used: 1 Monophonic transmissio
2、ns 1.1 Radio-frequency (RF) signal The RF signal consists of a carrier frequency-modulated by the sound signal to be transmitted, after pre-emphasis, with a maximum frequency deviation equal to: 75 kHz or 50 kHz. NOTE 1 In the West European countries and the United States of America, the maximum dev
3、iation is 75 kHz. In the ex-USSR and in some other European countries, it is 50 kHz. 1.2 Pre-emphasis of the sound signal The pre-emphasis characteristic of the sound signal is identical to the admittance-frequency curve of a parallel resistance-capacitance circuit having a time constant of: 50 s or
4、 75 s. NOTE 2 In Europe, the pre-emphasis is 50 s. In the United States of America, it is 75 s. 2 Stereophonic transmissions 2.1 Polar-modulation system 2.1.1 RF signal The RF signal consists of a carrier frequency-modulated by a baseband signal, known in this case as the stereophonic multiplex sign
5、al, with a maximum frequency deviation equal to: 75 kHz or 50 kHz (see Note 1, 1). 2.1.2 Stereophonic multiplex signal This signal is produced as follows: 2.1.2.1 A signal M is formed equal to one half of the sum of the left-hand signal, A, and the right-hand signal, B, corresponding to the two ster
6、eophonic channels. This signal, M, is pre-emphasized in the same way as monophonic signals (see 1). _ *Administrations are invited to supply further information on the system parameters, particularly concerning new tables on frequency tolerances. 2 Rec. ITU-R BS.450-3 NOTE 1 M is a compatible signal
7、 in the sense that the stereophonic transmission may be received by a monophonic receiver equipped for the same maximum frequency deviation and the same pre-emphasis. 2.1.2.2 A signal S is produced equal to one half of the difference between signals A and B mentioned above. This signal, S, is pre-em
8、phasized in the same way as signal M. The pre-emphasized signal, S, is used for the amplitude modulation of a sub-carrier at 31.25 kHz; the spectrum of the amplitude-modulated sub-carrier is formed so that the sub-carrier amplitude is reduced by 14 dB and the spectral components of the given modulat
9、ing signal appear to be transformed as follows: fff K4.6j54.6j1)(+= where f is equal to each frequency component (kHz). 2.1.2.3 The stereophonic multiplex signal is the sum of: the pre-emphasized signal, M; the sideband spectral components which are the product of amplitude-modulated unsuppressed ca
10、rrier by a pre-emphasized signal S additionally transformed from the law );( f K the sub-carrier with the amplitude reduced by 14 dB. 2.1.2.4 The amplitudes of the various components of the stereophonic multiplex signal, referred to the maximum amplitude of that signal (which corresponds to the maxi
11、mum frequency deviation) are: signal M : maximum value 80% (A and B being equal, and in phase); signal S : maximum value 80% (A and B being equal but of opposite phase); reduced sub-carrier at 31.25 kHz; maximum residual amplitude 20%. 2.1.2.5 The frequency modulation is arranged in such a way that
12、positive values of the multiplex signal correspond to a positive frequency deviation of the main carrier and negative values to negative frequency deviation. 2.2 Pilot-tone system 2.2.1 RF signal The RF signal consists of a carrier frequency-modulated by a baseband signal, known in this case as the
13、stereophonic multiplex signal, with a maximum frequency deviation equal to: 75 kHz or 50 kHz (see Note 1, 1). 2.2.2 Stereophonic multiplex signal This signal is produced as follows: 2.2.2.1 A signal M is formed equal to one half of the sum of the left-hand signal, A, and the right-hand signal, B, co
14、rresponding to the two stereophonic channels. This signal, M, is pre-emphasized in the same way as monophonic signals (see 1) (see Note 1, 2). 2.2.2.2 A signal S is produced equal to one half of the difference between signals A and B mentioned above. This signal, S, is pre-emphasized in the same way
15、 as signal M. The pre-emphasized signal, S, is used for the suppressed-carrier amplitude modulation of a sub-carrier at 38 kHz 4 Hz. Rec. ITU-R BS.450-3 3 NOTE 2 The same effect is obtained by pre-emphasizing the left-hand signal A and the right-hand signal B before encoding. For technical reasons t
16、his procedure is sometimes preferred. 2.2.2.3 The stereophonic multiplex signal is the sum of: the pre-emphasized signal, M; the sidebands of the suppressed sub-carrier amplitude modulated by the pre-emphasized signal, S; a pilot signal with a frequency of 19 kHz exactly one-half the sub-carrier fre
17、quency. 2.2.2.4 The amplitudes of the various components of the stereophonic multiplex signals referred to the maximum amplitude of that signal (which corresponds to the maximum frequency deviation) are: signal M : maximum value 90% (A and B being equal and in phase); signal S : maximum value of the
18、 sum of the amplitudes of the two sidebands: 90% (which corresponds to A and B being equal and of opposite phase); pilot signal: 8 to 10%; sub-carrier at 38 kHz suppressed: maximum residual amplitude 1%. 2.2.2.5 The relative phase of the pilot signal and the sub-carrier is such that, when the transm
19、itter is modulated by a multiplex signal for which A is positive and B = A, this signal crosses the time axis with a positive slope each time the pilot signal has an instantaneous value of zero. The phase tolerance of the pilot signal should not exceed 3 from the above state. Moreover, a positive va
20、lue of the multiplex signal corresponds to a positive frequency deviation of the main carrier. 2.2.3 Baseband signal in the case of a supplementary signal transmission If, in addition to the monophonic or stereophonic programme, a supplementary monophonic programme and/or supplementary information s
21、ignals are transmitted and the maximum frequency deviation is 75 kHz, the following additional conditions must be met: 2.2.3.1 The insertion of the supplementary programme or signals in the baseband signal must permit compatibility with existing receivers, i.e. these additional signals must not affe
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