ITU-R BS 1698-2005 Evaluating fields from terrestrial broadcasting transmitting systems operating in any frequency band for assessing exposure to non-ionizing radiation ((Question .pdf
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1、 Rec. ITU-R BS.1698 1 RECOMMENDATION ITU-R BS.1698 Evaluating fields from terrestrial broadcasting transmitting systems operating in any frequency band for assessing exposure to non-ionizing radiation (Question ITU-R 50/6) (2005) Scope This Recommendation is intended to provide a basis for the deriv
2、ation and estimation of the values of electromagnetic radiation from a broadcasting station that occurs at particular distances from the transmitter site. Using such information, responsible organizations can then develop appropriate standards that may be used to protect humans from undesirable expo
3、sure to harmful radiation. The actual values to be applied in any regulation will naturally depend on decisions reached by responsible health agencies, domestic and worldwide. The ITU Radiocommunication Assembly, considering a) that radio-frequency energy may have unsafe effects on the human body; b
4、) that radio-frequency energy may induce harmful electric potentials in conducting material; c) that radio-frequency energy may have harmful effects on apparatus (such as radiocommunication apparatus, navigation instruments, cardiac pacemakers, scientific or medical equipment, etc.); d) that radio-f
5、requency energy may lead to unintentional ignition of inflammable or explosive material; e) that determination of hazardous radiation levels and electric potentials, in terms of spectrum content, intensity, cumulative effects, etc., are being made by competent authorities; f) that determination of a
6、reas where radio-frequency fields and electric potentials exceed safe levels are being made by competent authorities; g) that persons not associated with such systems may be exposed inadvertently to such radiation (including travellers by air) or to such electric potentials; h) that persons operatin
7、g and maintaining radio transmitting systems may be required to work in close proximity to the source of such radio-frequency exposures, recommends 1 that Annex 1 to this Recommendation should be used to evaluate the electromagnetic fields generated by terrestrial broadcasting transmitting systems o
8、perating in any frequency band, for assessing exposure to non-ionizing radiation. 2 Rec. ITU-R BS.1698 Annex 1 Evaluating fields from terrestrial broadcasting transmitting systems operating in any frequency band for assessing exposure to non-ionizing radiation CONTENTS Page 1 Introduction 3 2 Charac
9、teristics of electromagnetic fields 4 2.1 General field characteristics . 4 2.1.1 Field components . 4 2.1.2 Far field 4 2.1.3 Near field 7 2.1.4 Polarization 7 2.1.5 Modulation. 7 2.1.6 Interference patterns. 13 2.2 Field-strength levels near broadcasting antennas . 13 2.2.1 LF/MF bands (150-1 605
10、kHz). 13 2.2.2 HF bands (3-30 MHz) 13 2.2.3 VHF/UHF bands (30 MHz-3 GHz) . 14 2.2.4 SHF (3-30 GHz). 14 2.3 Mixed frequency field. 16 2.4 EMF inside buildings 16 3 Calculation 17 3.1 Procedures. 17 3.1.1 Closed solutions . 17 3.1.2 Numerical procedures 18 4 Measurements. 20 4.1 Procedures. 20 4.1.1 L
11、F/MF bands 20 4.1.2 HF bands 21 Rec. ITU-R BS.1698 3 Page 4.1.3 VHF/UHF bands 21 4.1.4 SHF bands 21 4.2 Instruments . 21 4.2.1 Introduction 21 4.2.2 Characteristics of the measurement instruments for electric and magnetic field. 22 4.2.3 Narrow-band instrument types and specifications . 23 4.3 Compa
12、rison between predictions and measurements . 24 5 Precautions at transmitting stations and in their vicinity 24 5.1 Precautions to control the direct health effects of RF radiation . 24 5.1.1 Employee (occupational) precautionary measures 25 5.1.2 Precautionary measures in relation to the general pu
13、blic 26 5.2 Precautions to control the indirect RF radiation hazards 26 Appendix 1 to Annex 1 Examples of calculated field strengths near broadcasting antennas 27 Appendix 2 to Annex 1 Comparison between predictions and measurements. 41 Appendix 3 to Annex 1 Limits and levels. 62 Appendix 4 to Annex
14、 1 Additional evaluation methods. 71 Appendix 5 to Annex 1 Electromedical devices. 75 Appendix 6 to Annex 1 References 76 1 Introduction For many years the subject of the effects of electromagnetic radiation has been considered and attempts have been made to quantify particular limits that could be
15、used to protect humans from undesirable effects. Studies in many countries by various organizations have resulted in various administrative regulations. It is noteworthy and understandable that no single standard has emerged from all the efforts in this regard. This Recommendation is intended to pro
16、vide a basis for the derivation and estimation of the values of electromagnetic radiation from a broadcast station that occur at particular distances from the transmitter site. Using such information, responsible organizations can then develop appropriate 4 Rec. ITU-R BS.1698 standards that may be u
17、sed to protect humans from undesirable exposure to harmful radiation. The actual values to be applied in any regulation will naturally depend on decisions reached by responsible health agencies, domestic and worldwide. It is noted that this ITU-R Recommendation and ITU-T Recommendations cover simila
18、r material, but with an emphasis on different aspects of the same general subject. For example, ITU-T Recom-mendations K.52 (Guidance on complying with limits for human exposure to electromagnetic fields) and K.61 (Guidance to measurement and numerical prediction of electromagnetic fields for compli
19、ance with human limits for telecommunication installations) provide guidance on compliance with exposure limits for telecommunication systems. Appropriate reference information is included in Appendix 6. 2 Characteristics of electromagnetic fields 2.1 General field characteristics This section gives
20、 an overview of the special characteristics of electromagnetic (EM) fields that are relevant to this Recommendation, especially the distinction between the near field and the far field. Simple equations are derived for calculating the power density and the field strength in the far field, and the se
21、ction concludes by defining the terms polarization and interference patterns. 2.1.1 Field components The EM field radiated from an antenna is comprised of various electric and magnetic field components, which attenuate with distance, r, from the source. The main components are: the far field (Fraunh
22、ofer), also called the radiation field, in which the magnitude of the fields diminishes at the rate of 1/r; the radiating near field (Fresnel), also called the inductive field. The field structure of the inductive field is highly dependent on the shape, size and type of the antenna although various
23、criteria have been established and are commonly used to specify this behaviour; the reactive near field (Rayleigh), also called quasi-static field, which diminishes at the rate of 1/r3. As the inductive and quasi-static components attenuate rapidly with increasing distance from the radiation source,
24、 they are only of significance in the vicinity of the transmitting antenna in the so-called near-field region. The radiation field, on the other hand, is the dominant element in the so-called far-field region. It is the radiation field which effectively carries a radio or television signal from the
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