CEPT ERC REC 54-01 E-1998 Method of Measuring the Maximum Frequency Deviation of FM Broadcast Emissions in the Band 87 5 MHz to 108 MHz at Monitoring Stations (Funchal 1998)《测量在监测站.pdf
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1、STD-CEPT CEPT/ERC/REC 54-01 E-ENGL 1948 232b4L4 OOL3YL2 OBT m CEPT/ERCREC 54-01 E Page 1 Distribution: B CEPT/ERC Recommendation ERC 54-01 E (Funchal 1998) METHOD OF MEASURING THE MAXIMUM FREQUENCY DEVIATION OF FM BROADCAST EMISSIONS IN THE BAND 87.5 MHz TO 108 MHz AT MONITORING STATIONS Recommendat
2、ion adopted by the Working Group Frequency Management (WGFM) INTRODUCTION The purpose of this Recommendation is to provide a common measurement method which will enable CEPT administrations to recognise measurement results relating to the frequency deviation of FM broadcast emissions on a mutual bas
3、is. “The European Conference of Postal and Telecommunications Administrations, considering that frequencies in the VHF band 87.5 - 108 MHz are assigned to an increasing number of FM broadcasting stations; that protection ratios for the planning of broadcasting transmitter frequencies are based on a
4、maximum frequency deviation of k75 kHz and a maximum power of the modulation signal which does not exceed the power of a sinusoidal tone which causes a k19 kHz frequency deviation; that various broadcast transmissions exceed the maximum frequency deviation owing to different types of programmes and
5、additional components of the composite signal (e.g. radio data system (RDS); that limitation of the peak frequency deviation is required to guarantee mutual protection of broadcast services (on adjacent channels); that monitoring of broadcast emissions is necessary to prevent transmissions from exce
6、eding the maximum frequency deviation; that common measurement procedures are necessary in order to achieve mutual acceptance of measurement results by the parties concerned, e.g. frequency managers, monitoring services and broadcasters; that the number of broadcasting stations using additional sign
7、als as RDS and high speed data signals is increasing and these systems are highly sensitive to interference from adjacent channels, recogn ising a) that the method described in Annex 1 is a simple “go - no go“ test based on a spectrum mask which cannot replace precise measurements of the frequency d
8、eviation, recommends 1 that the method described in Annex 1 may be used as a verification to indicate whether the frequency deviation of an FM broadcasting station exceeds the limits; 2 that the method described in Annex 2 is used when the values of the deviation and modulation power are required. S
9、TDmCEPT CEPT/ERC/REC 1 2 3 4 5 54-01 E-ENGL 1998 9 2326434 0013413 T1b 9 CEPT/ERC/REC 54-01 E Page 1 Annex 1 Annex 1 SIMPLE SPECTRUM MASK BASED METHOD TO INDICATE THE EXCEEDING OF FREQUENCY DEVIATION LIMITS REQUIREMENTS For this measurement any suitable spectrum analyser or test receiver with analys
10、er capabilities can be used. CONNECTION BETWEEN TRANSMITTER AND SPECTRUM ANALYSER With the aid of a measurement antenna. MEASUREMENT CONDITIONS a) During three measurements of five minutes each, the transmitter to be judged should be modulated with a representative programme material for that partic
11、ular transmitter. Additional measurements may be carried out to ensure that the programme material is truly representative; b) impulse interferences should not occur (for example interference from an ignition source); c) signal/interference+noise should be 250 dB. ADJUSTMENTS OF THE SPECTRUM ANALYSE
12、R The spectrum analyser should be adjusted as follows: - Centre frequency = f, (Carrier frequency of the transmitter) - RBW 10 kHz (IF filter) - VBW 10 kHz (Video filter) - Span 340 kHz - Sweeptime 340 ms (ImskHz) - max hold mode - Input attenuation is dependent on input level. Settings for DSP (dig
13、ital signal processor) analysers will be different but should provide equivalent results. MEASUREMENT INSTRUCTIONS a) Record the transmitter signal over a five minutes period; b) Observation of the analyser and acoustic controls at the receiver should be used as a means to ensure that no measurement
14、 results are evaluated which have been distorted by impulse interference. For the same reason the measurement is repeated twice; c Overlay the graphical measurement with the mask as described in paragraph 7; d) The centre of the x-axis of the mask shall correspond with the centre frequency (fo); e)
15、Adjust the reference level so that the maximum amplitude of the measurement corresponds to O dB; f) Determine whether the measurement is within the limits of the mask. CEPTERCREC 54-01 E Page 2 Annex 1 6 LIMITS If any of the measured spectra exceeds the mask the deviation of the transmitter is assum
16、ed not to meet the requirements. 7 MASK CONSTRUCTION a) The calibration of the mask should be consistent with the analyser settings; b) The centre of the X-axis is aligned to fo; c) The top of the Y-axis corresponds with the O dB reference level; 4 Straight lines connect the Co-ordinates: x-axis Y-a
17、xis fo- 74 fo- 107.5 fo- 124 -30 fo- 152.5 -40 The graphic display of the table is shown below. I X-axis I Y-axis I (kH4 fo+ 74 fo+ 107.5 fo+ 124 ffi+ 152.5 Shape of the Mask B (relative to peak) O -5 -10 -1 5 -20 -25 -30 -35 -40 -45 -152.5 -124 -07.5 -74 +74 +107.5 +I24 +52.5 frequency separation f
18、rom carrier (kHz1 STD=CEPT CEPT/ERC/REC 54-01 E-ENGL 1998 2326434 00334115 897 CEPT/ERC/REC 5461 E Page 1 Annex 2 Annex 2 METHOD OF MEASURING THE MAXIMUM FREQUENCY DEVIATION OF FM BROADCAST EMISSIONS AT MONITORING STATIONS 1 GENERAL 1.1 Definitions Frequency deviation: in the case of frequency modul
19、ation, the deviation of the frequency from the frequency of the unmodulated carrier fo. Instantaneous deviation: In the case of frequency modulation, the instantaneous deviation Af(t) is t difference between the unmodulated carrier frequency (fo) and the instantane frequency at any given time (t). T
20、he instantaneous frequency is: f(t) = fo + Af(t). Peak deviation: Composite signal: Modulation power: O dBr: In the case of frequency modulation, the peak deviation AF is the absolute maximum of the difference between the unmodulated carrier frequency (fo) and the instantaneous frequency f(t). In th
21、e case of frequency modulation with sinusoidal signals. The instantaneous frequency is: f(t) = fo + AF*sin(wt). This signal includes all stereo information (including the pilot tone) and may also include the traffic radio signal, the RDS signal and other additional signals. The relative power averag
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