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公众时域射频电磁场暴露的原位测量程序。

In-situ measurement procedures for temporal RF electromagnetic field exposure of the general public.

作者信息

Joseph Wout, Verloock Leen, Tanghe Emmeric, Martens Luc

机构信息

Department of Information Technology, Ghent University/IBBT, Gaston Crommenlaan 8, Ghent, Belgium.

出版信息

Health Phys. 2009 May;96(5):529-42. doi: 10.1097/01.HP.0000341327.37310.c8.

Abstract

In this paper, the general public's exposure to FM, GSM, and UMTS over 7 day's time is investigated. The purpose of this paper is to investigate how short-period measurements can be representative for the actual maximal and average exposure during longer periods such as 1 week. Locations of public RF exposure have been categorized according to the type of environment, population density, and the amount of mobile phone traffic. Five different sites have been selected to perform measurements of the electric fields over time. In total 352,800 time samples of the electric field were obtained from the measurement campaign. A factor X is defined as the ratio between the actual maximal value of the temporal measurements and the estimated maximal value from short-period data. Three different methods to assess X are compared and an optimal method is proposed for an in-situ measurement procedure. Median values of X according to the proposed method are 1.05, 0.47, and 0.96, for FM, GSM, and UMTS, respectively. Moreover a factor R is defined as the ratio between the median and maximal value of the momentary temporal field measurements, indicating the level of variation of a certain signal over time. R enables to calculate maximal values from median values and vice versa. Median values of R are 0.92, 0.66, and 0.71 for FM, GSM, and UMTS, respectively. By combining X and R one can estimate the actual maximal and median exposure during longer periods from short-period measurements.

摘要

本文研究了公众在7天时间内接触调频(FM)、全球移动通信系统(GSM)和通用移动通信系统(UMTS)的情况。本文的目的是研究短期测量如何能够代表较长时间段(如1周)内的实际最大暴露量和平均暴露量。公共射频暴露的位置已根据环境类型、人口密度和移动电话流量进行了分类。选择了五个不同的地点来进行电场随时间变化的测量。在测量活动中总共获得了352,800个电场时间样本。定义了一个因子X,它是时间测量的实际最大值与短期数据估计最大值之间的比率。比较了三种评估X的不同方法,并针对现场测量程序提出了一种最佳方法。根据所提出的方法,调频、全球移动通信系统和通用移动通信系统的X中位数分别为1.05、0.47和0.96。此外,定义了一个因子R,它是瞬时时间场测量的中位数与最大值之间的比率,表明某个信号随时间的变化程度。通过R可以从中位数计算出最大值,反之亦然。调频、全球移动通信系统和通用移动通信系统的R中位数分别为0.92、0.66和0.71。通过结合X和R,可以从短期测量中估计较长时间段内的实际最大暴露量和中位数暴露量。

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