CISPR TR 18-3-2010 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 3 Code of practice for minimizing the generation of radio noise《架空电力.pdf
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1、 TR CISPR 18-3Edition 2.0 2010-06TECHNICAL REPORT Radio interference characteristics of overhead power lines and high-voltage equipment Part 3: Code of practice for minimizing the generation of radio noise TRCISPR 18-3:2010(E)INTERNATIONAL SPECIAL COMMITTEE ON RADIO INTERFERENCE THIS PUBLICATION IS
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9、2 11 Fax: +41 22 919 03 00 TR CISPR 18-3Edition 2.0 2010-06TECHNICAL REPORT Radio interference characteristics of overhead power lines and high-voltage equipment Part 3: Code of practice for minimizing the generation of radio noise INTERNATIONAL ELECTROTECHNICAL COMMISSION XICS 33.100.01 PRICE CODEI
10、SBN 978-2-88912-018-5INTERNATIONAL SPECIAL COMMITTEE ON RADIO INTERFERENCE Registered trademark of the International Electrotechnical Commission 2 TR CISPR 18-3 IEC:2010(E) CONTENTS FOREWORD.4 INTRODUCTION.6 1 Scope.8 2 Normative references .8 3 Terms and definitions .8 4 Practical design of overhea
11、d power lines and associated equipment in order to control interference to radio broadcast sound and television reception .8 4.1 Overview .8 4.2 Corona on conductors .9 4.3 Corona on metal hardware 9 4.4 Surface discharges on insulators.9 4.4.1 Clean or slightly polluted insulators .9 4.4.2 Very pol
12、luted insulators .10 4.5 Spark and microsparks due to bad contacts, commutation effects .10 4.6 Defects on power lines and associated equipment in service.10 5 Methods of prediction of the reference level of an overhead line.11 5.1 General .11 5.2 Correlation of data given elsewhere in this publicat
13、ion 11 5.3 CIGR formula 12 5.4 Determination of 80 % level.13 5.5 Conclusions 13 6 Preventive and remedial measures to minimize radio noise generated by bad contacts and their detection and location14 6.1 General .14 6.2 Preventive and remedial measures14 6.3 Methods of detecting and locating bad co
14、ntacts 15 7 Formulae for predetermination of the radio noise field strength produced by large conductor bundles (more than four sub-conductors) and by tubular conductors 17 7.1 Basic principles .17 7.2 Calculation of corona radio noise field strengths due to large bundles.18 7.2.1 Procedure for the
15、predetermination of the radio noise field strength 18 7.2.2 Calculation of the excitation function in heavy rain 18 7.2.3 Correction factor to evaluate the excitation function in other weather categories .19 7.2.4 Calculation of the radio noise field strength .19 7.3 Evaluation of corona radio noise
16、 field strength due to large tubular conductors 20 8 Figures.22 Annex A (informative) Formulae for predicting the radio noise field strength from the conductors of an overhead line .30 Annex B (informative) Analytical procedure for the predetermination of the radio noise field strength, at a given d
17、istance from an overhead line with large bundle conductors .38 Bibliography45 Figure 1 Bundle conductors .22 Figure 2 Line with conductors in a flat configuration.23 TR CISPR 18-3 IEC:2010(E) 3 Figure 3 Line with conductors in a delta configuration24 Figure 4 Line with conductors in a triangular con
18、figuration.25 Figure 5 Line with conductors in a flat configuration.26 Figure 6 Line with conductors in a delta configuration27 Figure 7 Line with conductors in a triangular configuration.28 Figure 8 Tubular conductors of 40 cm diameter .29 Figure B.1 Designation of the geometrical quantities for th
19、e simplified analytical method .43 Figure B.2 Lateral profiles of the radio noise field strengths produced by the individual phases and of the total field, as calculated in the given example44 Table A.1 Empirical methods, terms of the predetermination formulae developed by several institutions, surv
20、ey32 Table A.2 Empirical methods, complete predetermination formulae developed by several institutions, survey34 Table A.3 Predetermination formulae, examples for calculation of the absolute field strength levels 36 4 TR CISPR 18-3 IEC:2010(E) INTERNATIONAL ELECTROTECHNICAL COMMISSION INTERNATIONAL
21、SPECIAL COMMITTEE ON RADIO INTERFERENCE _ RADIO INTERFERENCE CHARACTERISTICS OF OVERHEAD POWER LINES AND HIGH-VOLTAGE EQUIPMENT Part 3: Code of practice for minimizing the generation of radio noise FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standa
22、rdization comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international co-operation on all questions concerning standardization in the electrical and electronic fields. To this end and in addition to other activities, IEC publishes Inte
23、rnational Standards, Technical Specifications, Technical Reports, Publicly Available Specifications (PAS) and Guides (hereafter referred to as “IEC Publication(s)”). Their preparation is entrusted to technical committees; any IEC National Committee interested in the subject dealt with may participat
24、e in this preparatory work. International, governmental and non-governmental organizations liaising with the IEC also participate in this preparation. IEC collaborates closely with the International Organization for Standardization (ISO) in accordance with conditions determined by agreement between
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