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Assessment and comparison of total RF-EMF exposure in femtocell and macrocell base station scenarios

机译:评估和比较毫微微蜂窝基站和宏蜂窝基站场景中的总RF-EmF暴露

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摘要

The indoor coverage of a mobile service can be drastically improved by deployment of an indoor femtocell base station (FBS). However, the impact of its proximity on the total exposure of the human body to radio-frequency (RF) electromagnetic fields (EMFs) is unknown. Using a framework designed for the combination of near-field and far-field exposure, the authors assessed and compared the RF-EMF exposure of a mobile-phone (MP) user that is either connected to an FBS or a conventional macrocell base station while in an office environment. It is found that, in average macrocell coverage and MP use-time conditions and for Universal Mobile Telecommunications System technology, the total exposure can be reduced by a factor of 20-40 by using an FBS, mostly due to the significant decrease in the output power of the MP. In general, the framework presented in this study can be used for any exposure scenario, featuring any number of technologies, base stations and/or access points, users and duration.
机译:通过部署室内毫微微小区基站(FBS),可以大大改善移动服务的室内覆盖范围。但是,它的接近度对人体对射频(RF)电磁场(EMF)的总暴露的影响尚不清楚。作者使用为近场和远场曝光的组合而设计的框架,评估并比较了连接到FBS或传统宏蜂窝基站的移动电话(MP)用户的RF-EMF曝光,在办公环境中。发现,在平均宏小区覆盖范围和MP使用时间条件下以及对于通用移动电信系统技术,使用FBS可以使总暴露减少20-40倍,这主要是由于输出显着下降MP的力量。通常,本研究中提出的框架可用于任何暴露情况,具有多种技术,基站和/或接入点,用户和持续时间。

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