EN 60835-3-9-1995 en Methods of Measurement for Equipment Used in Digital Microwave Radio Transmission Systems Part 3 Measurements on Satellite Earth Stations Section 9 Terminal Eq.pdf
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1、CENELEC ENxfa0835-3- 9 75 E 3404563 0364759 723 BRITISH STANDARD Methods of measurement for equipment used in digital microwave radio transmission systems Part 3. Measurements on satellite earth stations Section 3.9 Terminal equipment SCPC-PSK The European Standard EN 608353-9 : 1995 has the status
2、of a British Standard ICs 33.060.30 BS EN BS 7573 : Section 3.9 : 1995 1993 608353-9 : 1995 IEC 835-3-9 : CENELEC ENubOB35-3- 9 75 m 3404563 OLb47b0 443 m BS EN 60835-3-9 : 1995 Amd. No. Date This British Standard, having been prepared under the direction of the Electrotechnical Sector Board, was pu
3、blished under the authority of the Standards Board and comes into effect on 15 December 1995 O BSI 1995 Text affected Committees responsible for this British Standard The preparation of this Britjsh Standard was entrusted to Technical Committee EPU12, Radio communication, upon which the following bo
4、dies were represented British Broadcasting Corporation British Radio and Electronic Equipment Manufacturers Association British Telecommunications plc ERA Technology Ltd. Institution of Electrical Engineers Radio, Electrical and Television Retailers Association Radiocommunications Agency The followi
5、ng BSI references relate to the work on this standard Committee reference EPU12 Draft for comment 91/22367 DC ISBN O 580 24962 X CENELEC EN*b0835-3- 9 95 3404583 OLb47bL 38T BS EN 608353-9 : 1995 Contents Committees responsible National foreword Page Inside front cover 11 Foreword Text of EN 60835ZL
6、9 2 3 i CENELEC EN*bO35-3- 9 95 U 3404583 0364762 216 W BS EN 608353-9 : 1995 National foreword “his British Standard has been prepared by Technical Committee EPU12 and is the English language version of EN 6083539 : 1995 Methods of measurement for equipmmt used in digital microwave radio tmmbsion s
7、ystems Part 3: Measurements on satellite earth stations: Section 3.9 Tminal equipment - SCPC-PSK, published by the European Committee for Electrotechnical Standardization (CENELEC). It is identical with IEC 83539 : 1993, published by the International Electrotechnical Commission (IEC). BS EN 60835 i
8、s published in three Parts. The other Parts are: Part 1 Part 2 Mmrmts cmmn to terrestrial mdio- b) loopback connection method applied. 3.2 Total distortion including quantizing distorlion 3.2.1 Definition The signal-to-total distortion (including quantizing distortion) ratio is the ratio of the voic
9、e signal level to the total distortion level at the output terminal of the PCM decoder. CENELEC EN*b0835-3- 9 95 m 3i604583 0364770 392 m Page 8 EN 60835-3-9 : 1995 3.2.2 Method of measurement The measurement can be performed by either of two methods. According to the first method given in CCITT Rec
10、ommendation 0.131, and shown in figure 3, a band-limited pseudo-random noise signal (via filter F1, 350 Hz to 550 Hz), is applied to the input terminal of the PCM coder at specified levels (e.g. in the range of -60 to O dBmO). At each level, the noise at the PCM decoder output terminal is measured b
11、y a noise receiver in two bands: first in the band 350 Hz to 550 Hz via filter F1, then in the band 800 Hz to 3 400 Hz via filter F2. The signal-to-total distortion ratio, given by the difference in decibels between the levels thus measured, has to be scaled from the measuring band of filter F2 (800
12、 Hz to 3 400 Hz), to the total voice channel band (300 Hz to 3 400 Hz) by a factor equal to the ratio of these bands, that is by adding 0,76 dB to the result of the measurement. According to the second method given in CCITT Recommendation 0.132, a sinusoidal test signal is applied to the input termi
13、nal of the PCM coder at specified levels (e.g. in the level range given above). At each input level, the signal level at the PCM decoder output is measured. The test signal is then blocked by a narrow band rejection filter, and the total distortion product is measured by an r.m.s., or quasi-r.m.s.,
14、detector via a standard telephony noise weighting filter (see CCITT Recommendation 0.41 ). The signal-to-total distortion ratio is given by the difference in decibels between the two measured levels. This has to be scaled by a correction factor which is the difference in decibels between the measuri
15、ng bandwidth, excluding the stop-band at the rejection frequency, and the total measuring bandwidth including the stop-band. 3.2.3 Presentation of results The results should be expressed in decibels and, for preference, should be presented in the form of a graph with the input signal level as the ab
16、scissa. 3.2.4 Details to be specified The following items should be included, as required, in the detailed equipment specif cat ion: a) measurement method used (noise or sinusoidal test signals); b) the minimum required signal-to-total distortion ratio mask (in decibels); c) input signal level range
17、: d) loopback connection method applied. 3.3 Audio amplitude/frequency characteristics See IEC 835-1-3. 3.4 PCM coder overload point 3.4.1 Definition The overload point of the PCM coder is the level of the input signal which results in the first appearance of the highest positive or negative PCM out
18、put code, e.g. +111111 or -111111. CENELEC EN*b0835-3- 9 45 U 3404583 Olib4L 229 Page 9 EN 60835-3-9 1995 3.4.2 Method of measurement A test signal is applied from a low-frequency generator to the PCM coder input terminal at the reference frequency, and its level is increased until the highest PCM o
19、utput code first appears. This can be observed by displaying the PCM coder output pulses on an oscilloscope synchronized by the PCM clock signal and the start of limiting can be noted or, alternatively and if available, by observing the overload indicator lamp of the coder. 3.4.3 Presentation of res
20、ults The results should be expressed in dBmO, together with the measuring frequency. 3.4.4 Details to be specified The following items should be included, as required, in the detailed equipment specification: a) measuring frequency; b) permitted range of input levels resulting in overload. 3.5 Audio
21、 intermodulaiion products See IEC 835-1-2. The two audio frequency signals are added by a hybrid or a resistive adder, and then applied to the PCM coder. 3.6 Audio spurious output components See IEC 835-1-2. The out-of-band components with in-band signals, and the in-band components with out-of- ban
22、d signals, should be measured. The following additional items should be included, as required, in the detailed specification: a) frequency range and level range of the in-band signals; b) frequency range and level range of the out-of-band signals. CENELEC ENxbO835-3- 9 95 m 3404583 8364772 365 m Pag
23、e 10 EN 60835-3-9 : 1995 4 I.F. sub-system characteristics 4.1 Frequency accuracy and stability See IEC 835-1-2. The frequency accuracy and stability of various oscillators, such as the synthesizer reference oscillator, the digital clock source, the reference pilot oscillator, the PSK modulator carr
24、ier oscillator, PSK demodulator local oscillator, etc., shall be measured. Direct measurement of the i.f. output frequency of the PSK modulators usually is not necessary because it is synthesized from, and determined by, the frequencies of the reference oscillators. The stability measurement takes a
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