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本文(ITU-R SM 1836-2007 Test procedure for measuring the properties of the IF filter of radio monitoring receivers《无线电监测接收器IF过滤器道具测量的测试程序》.pdf)为本站会员(sofeeling205)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ITU-R SM 1836-2007 Test procedure for measuring the properties of the IF filter of radio monitoring receivers《无线电监测接收器IF过滤器道具测量的测试程序》.pdf

1、 Rec. ITU-R SM.1836 1 RECOMMENDATION ITU-R SM.1836 Test procedure for measuring the properties of the IF filter of radio monitoring receivers (2007) Scope This Recommendation belongs to a set of Recommendations describing the test methods to determine technical parameters of radio monitoring receive

2、rs that are important for the users of these receivers. When the described methods are followed by manufacturers, comparing different receivers is made easier. This Recommendation specifies a set of IF filter test procedures to determine the properties of the IF filter of a monitoring receiver. This

3、 test procedure definition is recommended to all the manufacturers, with the advantage for the users of such receivers that an easier and more objective assessment of product quality is possible. The ITU Radiocommunication Assembly, considering a) that ITU-R has published the Typical recommended spe

4、cifications for analogue and digital monitoring receivers in the Spectrum Monitoring Handbook (2002), but that nothing is said about the test procedures behind such specifications; b) that the specification of the properties of an IF filter strongly depend on the test procedures applied; c) that the

5、 IF filter quality not only depends on its nominal bandwidth but also on IF filter properties directly related to this bandwidth; d) that the IF filter parameters have a direct influence on the suitability of a receiver to fulfil certain monitoring tasks, especially under real environment conditions

6、 (high-level signals in the spectra near to the tuned frequency); e) that without a defined test procedure and a list of parameters to be measured, the IF filter quality cannot be assessed; f) that a defined test procedure for IF filter quality must be independent of the receiver design; g) that a w

7、ell-defined test procedure for IF filter quality, if adopted by all the manufacturers of radio monitoring receivers, will have the advantage for the users of such receivers, that an easier and more objective assessment of products from different manufacturers is possible; h) that supplementary infor

8、mation about these IF filter quality measurements can be found in the Report ITU-R SM.2125 Parameters of and measurement procedures on H/V/UHF monitoring receivers and stations; j) that when comparing the performance between two receivers the nominal IF bandwidths and the shape factors of the IF fil

9、ters are considered concurrently, recommends 1 that the measurement method in Annex 1 should be used to determine the IF filter properties. 2 Rec. ITU-R SM.1836 Annex 1 Test procedure for measuring the properties of the IF filter of radio monitoring receivers 1 General aspects Two important IF filte

10、r parameters of a radio monitoring receiver are: the nominal bandwidth; and the shape factor. 2 Definition and measurement of the IF filter nominal bandwidth The bandwidth of the IF filter of a monitoring receiver in ITU is defined as the 6 dB bandwidth but the same procedure can be used for other b

11、andwidths such as 3 dB, too. For measuring this bandwidth a signal generator is connected to the antenna input of the receiver. The signal generator is then swept over a frequency range of: fc BWIFto fc + BWIFwhere: fc:centre frequency of the IF filter BWIF:specified bandwidth of the IF filter under

12、 test. The frequency resolution of the sweep should be BWIF/100 or better. The frequency response of the filter is recorded. This can be done using the internal signal indicator of the receiver or a measurement receiver or spectrum analyser directly connected to the IF output of the IF amplifier con

13、taining the filter to be measured. In both cases the readout resolution should be 0.1 dB, or better, and the measurement accuracy should be 0.5 dB, or better. The 6 dB bandwidth is the bandwidth between the measurement points symmetrically around fcwhere the amplitude response of the filter drops 6

14、dB at both points. When digital IF output is available The signal generator may deliver either a spread signal or many frequencies (a Dirac comb, for example) spaced of about BWIF/100. The signal may cover a band over a frequency range of: fc BWIFto fc + BWIFwhere: fc: centre frequency of the IF fil

15、ter BWIF: specified bandwidth of the IF filter under test. The dynamic range of this signal must be better than 60 dB over the whole measurement band. The digital stream containing the IF filter is recorded. The resulting amplitude resolution in this measurement procedure should be 0.1 dB, or better

16、, and the frequency resolution should be BWIF/100, or better. Measurement accuracy should be 0.5 dB, or better. Rec. ITU-R SM.1836 3 3 Definition and measurement of the shape factor The shape factor is defined as the ratio of the 60 dB and 6 dB bandwidth (BWIF-60/BWIF-6, so an ideal rectangular filt

17、er has a shape factor of 1). When another bandwidth is used the shape factor is defined as the ratio of this bandwidth and the 60 dB bandwidth. Both bandwidths are determined using the method and measurement set-up described in Section 2 with the exception that the frequency scan range of the signal generator is increased. Whenever the shape factor is specified in the data sheet without any additional information the ratio of 60 dB and 6 dB bandwidth is meant. Optional shape factor measurements using other bandwidth values or ratios have to be specified.

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