ITU-T K 62-2004 System level radiated emissions compliance using mathematical modelling (Study Group 5)《(撤回)使用数学模型的系统级辐射发射物顺应性 系列K 抗干扰防护》.pdf
《ITU-T K 62-2004 System level radiated emissions compliance using mathematical modelling (Study Group 5)《(撤回)使用数学模型的系统级辐射发射物顺应性 系列K 抗干扰防护》.pdf》由会员分享,可在线阅读,更多相关《ITU-T K 62-2004 System level radiated emissions compliance using mathematical modelling (Study Group 5)《(撤回)使用数学模型的系统级辐射发射物顺应性 系列K 抗干扰防护》.pdf(26页珍藏版)》请在麦多课文档分享上搜索。
1、 INTERNATIONAL TELECOMMUNICATION UNION ITU-T K.62TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU (02/2004) SERIES K: PROTECTION AGAINST INTERFERENCE System level radiated emissions compliance using mathematical modelling ITU-T Recommendation K.62 ITU-T Rec. K.62 (02/2004) i ITU-T Recommendation K.62
2、 System level radiated emissions compliance using mathematical modelling Summary This Recommendation supports telecommunication operators in demonstrating the compliance of the radiated emissions generated by telecommunication systems. Telecommunication operators typically construct their systems fr
3、om many items of equipment that are each engineered to individually meet EMC requirements, including radiated emissions. This means that a system will typically contain a number of emissions sources (i.e., separate equipment items) at a number of common frequencies. This is true if the system contai
4、ns many items of the same equipment or many items of different equipment. For such a system, the superposition of these multiple emissions has the potential to produce a system emission level that is greater than the system emission limit. This is of fundamental concern for telecommunication operato
5、rs seeking to demonstrate the compliance of the radiated emissions of their systems. This Recommendation introduces a statistical approach to systems radiated emission compliance. By applying a statistical approach to the treatment of basic variables that are not known by the operator, a method is p
6、resented that allows the system emission level to be described statistically in terms of a probability and cumulative probability distributions. These distributions allow the compliance of the system emission level, with respect to a limit, to be expressed as a statistical confidence level (rather t
7、han as a simple “Pass“ or “Fail“ statement). It is proposed that the 80% confidence level be used for compliance to align with the approach taken for series production equipment within CISPR 22. The method presented may also be used by other organizations that either build or operate other systems t
8、hat are formed from the integration of many items of digital electronic equipment that each individually comply with their own radiated emissions limit. Source ITU-T Recommendation K.62 was approved on 29 February 2004 by ITU-T Study Group 5 (2001-2004) under the ITU-T Recommendation A.8 procedure.
9、ii ITU-T Rec. K.62 (02/2004) FOREWORD The International Telecommunication Union (ITU) is the United Nations specialized agency in the field of telecommunications. The ITU Telecommunication Standardization Sector (ITU-T) is a permanent organ of ITU. ITU-T is responsible for studying technical, operat
10、ing and tariff questions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Assembly (WTSA), which meets every four years, establishes the topics for study by the ITU-T study groups which, in turn, pro
11、duce Recommendations on these topics. The approval of ITU-T Recommendations is covered by the procedure laid down in WTSA Resolution 1. In some areas of information technology which fall within ITU-Ts purview, the necessary standards are prepared on a collaborative basis with ISO and IEC. NOTE In th
12、is Recommendation, the expression “Administration“ is used for conciseness to indicate both a telecommunication administration and a recognized operating agency. Compliance with this Recommendation is voluntary. However, the Recommendation may contain certain mandatory provisions (to ensure e.g. int
13、eroperability or applicability) and compliance with the Recommendation is achieved when all of these mandatory provisions are met. The words “shall“ or some other obligatory language such as “must“ and the negative equivalents are used to express requirements. The use of such words does not suggest
14、that compliance with the Recommendation is required of any party. INTELLECTUAL PROPERTY RIGHTS ITU draws attention to the possibility that the practice or implementation of this Recommendation may involve the use of a claimed Intellectual Property Right. ITU takes no position concerning the evidence
15、, validity or applicability of claimed Intellectual Property Rights, whether asserted by ITU members or others outside of the Recommendation development process. As of the date of approval of this Recommendation, ITU had not received notice of intellectual property, protected by patents, which may b
16、e required to implement this Recommendation. However, implementors are cautioned that this may not represent the latest information and are therefore strongly urged to consult the TSB patent database. ITU 2004 All rights reserved. No part of this publication may be reproduced, by any means whatsoeve
17、r, without the prior written permission of ITU. ITU-T Rec. K.62 (02/2004) iii CONTENTS Page 1 Scope 1 2 References. 1 3 Terms and definitions . 2 4 Abbreviations and acronyms 3 5 General principles. 3 6 Method 5 6.1 System map 6 6.2 System composure 7 6.3 Equipment emissions 7 6.4 Common emissions f
18、requencies. 8 6.5 Evaluation points 8 6.6 Separation matrix 8 6.7 Evaluation method 8 Appendix I Example distributions 11 I.1 N = 2. 11 I.2 N = 3. 12 I.3 N = 4. 13 I.4 N = 5. 14 I.5 N = 10. 15 I.6 N = 100. 16 I.7 Review of probability distributions 17 iv ITU-T Rec. K.62 (02/2004) Introduction Teleco
19、mmunication operators typically construct their systems from many items of equipment that are each engineered to individually meet EMC requirements, including radiated emissions. This means that a system will typically contain a number of emissions sources (i.e., separate equipment items) at a numbe
20、r of common frequencies. This is true if the system contains many items of the same equipment or many items of different equipment. The system as a whole will generally be expected to comply with a radiated emissions limit. This may be the same or different to the limit applicable to the individual
21、constituent equipment. For each common emission frequency, the presence of many individual sources within the system means that the system emission level may be higher than that of the individual equipment. A method is presented that allows the radiated emissions to be assessed without performing pr
22、actical measurement. The method presented is particularly suited to the analysis of systems that are physically very large, for which practical testing is both prohibitively expensive and practically difficult to perform. ITU-T Rec. K.62 (02/2004) 1 ITU-T Recommendation K.62 System level radiated em
23、issions compliance using mathematical modelling 1 Scope This Recommendation provides a procedure for demonstrating the compliance of the radiated RF emissions from telecommunication systems. Telecommunication operators typically construct their systems from many items of equipment that are each engi
24、neered to individually meet EMC requirements, including radiated emissions. This means that a system will typically contain a number of emissions sources (i.e., separate equipment items) at a number of common frequencies. This is true if the system contains many items of the same equipment or many i
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