ITU-R SM 332-4-1978 Selectivity of Receivers - Section 1A - Spectrum Engineering and Computer-Aided Principles and Techniques《接收器的选择性-第1A-频谱工程和电脑辅助的原则和技巧》.pdf
《ITU-R SM 332-4-1978 Selectivity of Receivers - Section 1A - Spectrum Engineering and Computer-Aided Principles and Techniques《接收器的选择性-第1A-频谱工程和电脑辅助的原则和技巧》.pdf》由会员分享,可在线阅读,更多相关《ITU-R SM 332-4-1978 Selectivity of Receivers - Section 1A - Spectrum Engineering and Computer-Aided Principles and Techniques《接收器的选择性-第1A-频谱工程和电脑辅助的原则和技巧》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、The CCIR, CCIR VOLUME*I 70 4855232 0507745 T Rec. 332-4 31 RECOMMENDATION 332-4 SELECTIVITY OF RECEIVERS (Question 5711) (1953-1956-1959-1963-1966-1970-1974-1978) CONSIDERING (a) that the selectivity of a receiver is a measure of its ability to discriminate between a wanted signal to which the recei
2、ver is tuned and unwanted signals; (b) that economy in the use of the radio spectrum requires the maximum selectivity compatible with the technical and economic considerations relating to the particular class of receiver; (c) that the method of single-signal selectivity is used to express the perfor
3、mance of certain characteristics of the receiver. The measurements are made with sufficiently low levels of input to avoid non-linearity (e.g. overloading) affecting the results; automatic gain control, automatic frequency control, etc., being rendered inoperative; (d) that measurement of selectivit
4、y with more than one signal should be the general method for measuring the selectivity. Sometimes the non-linear effects are numerous, then it will be necessary to select the most representa- tive cases to simplify the measurements; (e) that defined methods of single-signal and multiple-signal selec
5、tivity measurements are desirable to permit comparison of receivers, UNANIMOUSLY RECOMMENDS 1. modulation of the wanted signal without significant distortion (see also Recommendation 328 Q 1.1); 2. 2.1 2.2 the limitations of the selectivity of the receiver by unavoidable amplitude non-linearity, e.g
6、. cross-modulation ; 2.3. the fact that an excessively large attenuation-slope may lead to serious distortion of the phase/frequency characteristic in the passband; 2.4 the fact that selectivity and protection ratios are different characteristics, the first being a property of the receiver only, the
7、 second being an agreed minimum value, taking into account characteristics of the emission, propagation and reception; that the bandwidth of the receiver shall be no wider than is essential for the transmission of the necessary that in establishing the selectivity of a receiver, account should be ta
8、ken of: the unavoidable spread of the spectrum of signals in adjacent channels (see Recommendation 328, Q 3); 3. that the filters which determine the selectivity shall be included as near as possible to the receiver input, and the amplifying stages preceding the filters shall be sufficiently linear,
9、 to avoid significant loss of selectivity, e.g. by cross-modulation of the wanted signal by strong unwanted signals; 4. that, for the purpose of studying bandwidth or ,single-signal selectivity, the following definitions are used: 4.1 for amplitude-modulated signals (including single-sideband and in
10、dependent-sideband emissions), the passband is the band of radio frequencies accepted by the receiver and measured at the detector input, limited by the two frequencies for which the attenuation exceeds that of the most favoured frequency by some agreed value; in general this value is 6 dB, except f
11、or high-quality radiotelephony receivers where the value is 2 dB; 4.2 for frequency- or phase-modulated signals, the modulation acceptance bandwidth of a receiver, other than those used for broadcast reception, is twice the frequency deviation of an input signal which, when applied at a level 6 dB h
12、igher than the maximum usable sensitivity level, aad measured in accordance with Recommenda- tion 331, Q 11, will produce a Signal + noise + distortion noise + distortion . ratio equal to that specified for the maximum usable sensitivity level. This is an indication of the frequency deviation which
13、the receiver will accept without excessive degradation of the ratio Signal + noise + distortion noise + distortion , -. CCIR VOLUME*I 90 4855212 050794b 1 -. 32 Rec. 332-4 4.3 - of the difference in the attenuations corresponding to two different frequencies beyond the passband, - to the difference
14、between these frequencies; 4.4 - of the input signal level at the image frequency required to produce a specified output power from the receiver, -. to the level of the wanted signal required to produce the same output power. attenuation-slope: the attenuation-slope on each side of the passband is t
15、he rati: image-rejection ratio: the image-rejection ratio is the ratio: The image frequency is the wanted signal-frequency plus or minus twice the intermediate frequency, according to whether the frequency-change oscillator is respectively higher or lower in frequency than the wanted signal-frequenc
16、y . If the receiver incorporates more than one frequency change, theregwill be more than one image frequency, and for each of these will be a corresponding image-rejection ratio; 4.5 intermediate-frequency rejection ratio: the intermediate-frequency rejection ratio is the ratio: - of the level of a
17、signal at the intermediate frequency applied to the receiver input and which produces a specified output power from the receiver, to the level of the wanted signal required to produce the same output power; - 4.6 the frequency of an interfering signal and a harmonic of the local oscillator frequency
18、, etc., other spurious responses can occur when the intermediate frequency arises as the sum or the difference of spurious-response rejection ratio: the spurious-response rejection ratio is the ratio: - - of the input level at the interfering frequency required to produce a specified output power fr
19、om the receiver, to the level of the wanted signal to produce the same output power: 5. that single-signal measurements be made of the passband, the attenuation slope, the image response, the intermediate-frequency rejection and other spurious-response rejection ratios as defined above and also, in
20、frequency-modulation receivers, the modulation acceptance-bandwidth. For the attenuation-slope, sufficient indication is generally obtained by considering the frequency differ- ence corresponding to attenuations of 20, 40, 60 and if possible, 80 dB, reckoned from the limit frequencies of the passban
21、d. When the values thus obtained are essentially equal for the two sides of the passband, it is sufficient to give mean values. For some purposes it is of interest to know the bandwidth at fixed levels corresponding to the above-mentioned attenuations. These figures can easily be deduced from the pa
22、ssband and the attenuation-slopes at the different levels (see Fig. 1). Since, when plotted in decibels to a logarithmic scale of frequency, the sides of the selectivity characteris- tics are often almost straight beyond a certain frequency difference relative to the mid-band frequency, the attenuat
23、ion outside the passband can also be expressed as the slope of the attenuation/frequency characteristic, in decibels per octave of the frequency difference. The frequency and attenuation at the starting point of such a slope, relative to the mid-band frequency, should be stated; 6. that, for the pur
24、pose of studying the selectivity in the non-linear region with two or more input signals the following definitions are used: 6.1 effective selectivity: the effective selectivity is the ability of the receiver to discriminate between the wanted signal (to which the receiver is tuned) and unwanted sig
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