IEC TR 62630-2010 Guidance for evaluating exposure from multiple electromagnetic sources《暴露于多个电磁源的评估指南》.pdf
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1、 IEC/TR 62630 Edition 1.0 2010-03 TECHNICAL REPORT Guidance for evaluating exposure from multiple electromagnetic sources IEC/TR 62630:2010(E) colour inside THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2010 IEC, Geneva, Switzerland All rights reserved. Unless otherwise specified, no part of thi
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9、rvice Centre: www.iec.ch/webstore/custserv If you wish to give us your feedback on this publication or need further assistance, please visit the Customer Service Centre FAQ or contact us: Email: csciec.ch Tel.: +41 22 919 02 11 Fax: +41 22 919 03 00 IEC/TR 62630 Edition 1.0 2010-03 TECHNICAL REPORT
10、Guidance for evaluating exposure from multiple electromagnetic sources INTERNATIONAL ELECTROTECHNICAL COMMISSION X ICS 17.220.20; 33.050.10 PRICE CODE ISBN 2-8318-1083-8 Registered trademark of the International Electrotechnical Commission colour inside 2 TR 62630 IEC:2010(E) CONTENTS FOREWORD.4 INT
11、RODUCTION.6 1 Scope.7 2 Normative references .7 3 Terms, definitions and abbreviations 8 3.1 Terms and definitions 8 3.2 Physical quantities 16 3.3 Constants16 3.4 Abbreviations 16 3.5 Vector notations 17 4 Overview 17 5 Classification of devices and EM sources .20 5.1 General aspects 20 5.2 Device
12、classification based on the intended use: user-centric versus node- centric .20 5.3 EM source classification: single-channel versus band-wide transmitters21 6 Combined exposure from multiple narrowband EM sources 23 6.1 Guidance on the selection of the exposure summation approach.23 6.2 Correlation
13、between signals emitted by different EM sources 24 6.3 Relevant exposure metrics 24 6.4 Combined exposure from uncorrelated EM sources.25 6.5 Combined exposure evaluation of correlated EM sources25 6.5.1 Accurate estimate of the true field vector sum .25 6.5.2 Conservative combined exposure evaluati
14、on using scalar sensors 26 Annex A (informative) Frequency allocations for some common wireless services .29 Annex B (informative) Supporting analytical details32 Annex C (informative) Examples of combined exposure evaluations 39 Bibliography46 Figure 1 Electrical paths from the radiating elements o
15、f each panel in a dual-panel antenna system to a field-point P on the -z symmetry plane 18 Figure 2 True vector sum of the complex field envelopes produced at the field-point P by the individual antenna panels in Figure 1 at two different measurement times.19 Figure 3 Simultaneous exposure at the lo
16、cation X by multiple sector-antennas belonging to adjacent tri-sector cellular masts (labelled #1 and #2).21 Figure 4 Different approaches yielding distinct upper-bounds of the field vector-sum.28 Figure B.1 Vectorial interpretation of inequality (B25), yielding an upper-bound of the true field vect
17、or-sum (red arrow).37 Figure C.1 CAD model of the antenna system for a mobile phone, including a GSM/UMTS antenna and a Bluetooth antenna 39 Figure C.2 Qualitative description of the individual and combined SAR distributions for a mobile phone transmitting simultaneously GSM and Wi-Fi signals 40 Fig
18、ure C.3 Communications tower shared by different network operators.41 Figure C.4 Smart antenna formed by 8 vertical 5-element ground-backed dipole arrays. 42 TR 62630 IEC:2010(E) 3 Figure C.5 Power density distributions on the surface ( = 1 m) derived via Equations (6), (10), and (12) for the 3,5 GH
19、z smart antenna shown in Figure C.4.44 Figure C.6 Overestimations produced by Equations (10) and (12) over the exposure evaluation area ( = 1 m) for the 3,5 GHz smart antenna shown in Figure C.445 Table 1 Source classes: characteristics and examples of source classification 22 Table 2 Guidance on th
20、e selection of suitable evaluation techniques .23 Table A.1 Frequency allocations and bandwidths for common wireless technologies .29 4 TR 62630 IEC:2010(E) INTERNATIONAL ELECTROTECHNICAL COMMISSION _ GUIDANCE FOR EVALUATING EXPOSURE FROM MULTIPLE ELECTROMAGNETIC SOURCES FOREWORD 1) The Internationa
21、l Electrotechnical Commission (IEC) is a worldwide organization for standardization 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 f
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24、zation (ISO) in accordance with conditions determined by agreement between the two organizations. 2) The formal decisions or agreements of IEC on technical matters express, as nearly as possible, an international consensus of opinion on the relevant subjects since each technical committee has repres
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