移动通信基站辐射空间选择性对其引入的电磁背景水平的影响

V. Mordachev, D. Tsyanenka
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引用次数: 1

摘要

来自基站的射频电磁辐射是住宅区移动(蜂窝)通信系统产生的电磁背景的主要来源;其强度对栖息地的电磁污染水平有重要影响,并决定了种群的电磁安全水平。先前提出的用于估计该背景的平均强度的技术,基于对移动业务的区域强度的分析,通过引入等于基站服务扇区的数量的倒数的辐射方向性参数U,以简化的形式考虑基站辐射的空间选择性,假设辐射方向图的主瓣的宽度等于该扇区的宽度,并且不考虑垂直平面中的辐射方向性,这决定了这些估计的悲观性质。本文对两级天线辐射方向图模型的参数U值进行了精细分析,该模型反映了天线主瓣在水平面和垂直面上的宽度、旁瓣的相对水平以及主瓣和旁瓣的辐射功率比的真实值。对蜂窝通信系统的固定扇区天线和能够使用窄波束提供服务的4G/5G系统的自适应相控阵天线阵列进行了分析。分析表明,扇区天线的U参数值比基站扇区数的倒数小5–15 dB,对于自适应天线阵列的窄波束,这一差异达到20 dB。如果天线辐射方向图的主瓣相对于地平线的倾斜角小于30°,则在估计平均电磁背景强度时,其在主瓣中的天线增益的倒数可以用作基站辐射的空间选择性(方向性)的U参数值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Spatial Selectivity of Radiation of Mobile Communication Base Stations on the Level of Electromagnetic Background Introduced by them
Radio frequency electromagnetic radiation from base stations is the main source of electromagnetic background generated by mobile (cellular) communication systems in residential areas; its intensity makes a significant contribution to the level of electromagnetic pollution of the habitat and determines the level of electromagnetic safety of the population. The previously proposed technique for estimating the average intensity of this background, based on the analysis of the territorial intensity of mobile traffic, takes into account the spatial selectivity of base station radiation in a simplified form by introducing the radiation directivity parameter U, equal to the inverse of the number of base station service sectors, assuming that the width of the main lobe of the radiation pattern is equal to the width of this sector and without taking into account the radiation directivity in the vertical plane, which determines the pessimistic nature of these estimates. The paper presents a refined analysis of the values of the parameter U for a two-level models of antenna radiation patterns, which reflects the real values of the width of their main lobes in horizontal and vertical planes, the relative levels of side lobes and the ratio of radiation power of the main and side lobes. The analysis was performed both for stationary sector antennas of cellular communication systems and for adaptive phased antenna arrays of 4G/5G systems capable of providing service using narrow beams. The analysis showed that the value of the U parameter of sector antennas is 5–15 dB less than the inverse of the number of sectors of base stations, and for narrow beams of adaptive antenna arrays, this difference reaches 20 dB. If tilt angles of main lobes of antenna radiation patterns with respect to the horizon are less than 30°, then at estimation of the average electromagnetic background intensity the inverse of their antenna gain in the main lobe can be used as the U parameter value of the spatial selectivity (directivity) of base stations radiations.
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