EN 60315-7-1995 en Methods of Measurement on Radio Receivers for Various Classes of Emission Part 7 Methods of Measurement on Digital Satellite Radio (DSR) Receivers《各种发射类型的无线电接收器的.pdf
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1、 CENELEC EN*b0*315-7 95 3404583 OL73LOL 420 BRITISH STANDARD Methods of Measurement on radio receivers for various classes of emission Part 7. Methods of measurement on digital satellite radio (DSR) receivers The European Standard EN 603157 : 1995 has the status of a British Standard ICs 33.060.30 N
2、O COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITED BY COPYRIGHT LAW BS EN BS 4054 : Part 7 : 1996 60315-7 : 1996 IEC 315-7 : 1995 CENELEC EN*bO*315-7 95 = 3404583 OL73LO2 367 BS EN 60316-7 1996 AmdNo. Date Committees responsible for this British Standard Text affected The preparation of this Britis
3、h Standard was entrusted by Technical Committee EPUl, Audio, video and mdtimedia systems and equipment, to Subcommittee EPUl/l, Receiving equipment, upon which the following bodies were represented: Britbh Broad- Corporation British Educational Suppliers Association British Radio and Electronic Equi
4、pment Manukcturers Association British Telecommunications pic Institution of Electrical Engineem Intedonal Consumer Elecronics Association Radio, Electrid and Television Retailers Association Radiocommunications Agency This British Standard, having been prepared under the direction of the Electrotec
5、hnicai Sector Board, was pubiished under the authority of the Standards Board and comes into effect on 15 June 1996 O BSI 1996 The following BSI references relate to the work on this standard Committee reference EPUl/I Draft for comment 91/03151 DC ISBN O O58 26644 8 -. - - CENELEC EN*b0*315-7 95 =
6、3404583 0373303 2T3 BS EN 60315-7 : 1996 Contents Committees responsible Page Inside front cover National foreword ii Foreword 2 Text of EN 603157 3 O BSI 1996 .I i - - CENELEC EN*b0*315-7 95 = 3404583 OL73LOY L3T = BS EN 60315-7 : 1996 National foreword This British Standard has been prepared by Su
7、bcommittee EPY100/1 and is the English language version of EN 603157 : 1995 Methods of wzeusumt 012 dio receivers for mrous clusses of emission. Part 7: Methods of measurement on digital satellite dio (DSR receivers, published by the European Committee for Electrotechnical Standardization (CENELEC).
8、 It is identical with IEC 315-7 : 1995, including corrigendum : 1995, published by the Intedonal Electrotechnical Commission (IEC), and forms Part 7 of a multi-Part standard on measurement methods on radio receivers. This Part defines conditions and methods for detemiinllig the cmdcs of a DSR tuner/
9、receiver unit to facilitate comparison of measurements made using various methods. Performance requirements are not specified. Cross-references Publication referred to HD 483.3 s2 : 1992 (IEC 2683 : 1988) HD 483.15 S4 : 1992 (IEC 26815 : 1987) HD 560.1 s1: 1990 (IEC 3151 : 1988) EN 60651 : 1994 (IEC
10、 651 : 1979) EN 60958 : 1990 (IEC 958: 1989) Corresponding British Standard BS 6840 Sound sgstem equipment Part 3 : 1992 Methods for sp in this case, the utilization factor shall be clearly stated with the measurement results. NOTE - A standard utilization factor of 90 % was chosen since that value
11、should be as high as possible for a digital transmission system. However, in order to prevent severe distortion in case of small setting errors. the standard utilization factor of 100 % can not be chosen. 3.4 Measurlng instruments 3.4.1 Test signal generator A special test generator which provides a
12、n RF/IF signal according to the system description given in annex A shall be used for the measurements. QPSK modulation by an external baseband signal should be possible (see also 3.4.6). To avoid influence on the measurement results the accuracy of the phase angles of the QPSK modulator should be b
13、etter than 21“. It is assumed that the modulation of the test generator can be switched off (carrier only). 3.4.2 In order to avoid detrimental influence from analogue-digital converters, it is recommended to use a synthetically generated modulation signal which is generated either directly within t
14、he test signal generator or by an external data generator connected via an appropriate interface. Synthetically generated means that audio-signal values (e.g. of a sinusoidal tone), corresponding with the sampling frequency (32 kHz), are calculated theoretically and stored in a memory. These values
15、are fed directly to the encoding net- work. With the exception of some small system-related errors, the modulation of the trans- mitting signal in this case is a theoretically exact signal. Care shall be taken that the relationship between the sampling frequency and the synthesized audio frequency s
16、hould not become a simple integer. Generator for synthesized audio signals CENELEC EN*h*l15-7 75 3404583 01731LL 37T Page 7 EN 60315-7 : 1995 3.4.3 Noise source For measurements with different signal-to-noise ratios, a radio-frequency noise source is needed. In order to obtain a noise power in the r
17、ange of the input power level of the receiver, the noise signal generated by a noise source has generally to be amplified. Care shall be taken that the amplified noise signal represents white noise, at least in the frequency range of the transmitting channel (carrier frequency 17 MHz), .e. the noise
18、 power density shall be constant and noise peaks shall not overload the amplifier. 3.4.4 Input coupling network The DSR receiver may provide the d.c. power supply voltage for the outdoor unit, especially at the input for the first IF. Therefore, the test signal generator or the RF attenuator shall b
19、e equipped with a d.c. decoupling network. If necessary, an appropriate decoupling network has to be inserted. 3.4.5 RF/IF noise-measuring filter The noise-measuring filter is a band-pass filter with a noise-power bandwidth (corresponds to the -3 dB bandwidth of a single tuned circuit) of 16) MHz. N
20、OTE - A small variation (I10 %) of this bandwidth may be permitted. However, this should be taken into account in the evaluation of measurement results. 3.4.6 Data generator/bit error measuring instrument (error detector) Several performance characteristics of a DSR receiver are determined by using
21、a datdbit error measuring device. Generally this device consists of a data generator and an error detector. The data generator is connected, if necessary via an appropriate interface, to the QPSK modulation input of the test signai generator (see figures 8 and 9). The error detector is connected, if
22、 necessary via an interface, to the DSR receiver (see figures 8 and 10) at a test output suitable for bit error measurements (before error correction). NOTE - The interface at the transmitter side inserts synchronization words according to the DSR specification, whereas the interface at the receiver
23、 side stops bit error measuring (stops error detection) during these synchronization words. This is the minimum requirement for the receiver to make synchronization possible. Depending on the decoder strategy of the receiver other measures may be necessary. The data generator provides, corresponding
24、 with the QPSK modulator input of the test signal generator, either two 10,24 Mbit/s bitstreams, or one common 20,48 Mbit/s bitstream, controlled by a clock signal of the test signal generator. A sequence length of d5 -1 bits shall be used. If the same sequence is used to feed both modulation channe
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