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用于模拟GSM和WCDMA移动电话使用的暴露系统的剂量学评估。

Dosimetric assessment of an exposure system for simulating GSM and WCDMA mobile phone usage.

作者信息

Bahr Achim, Dorn Hans, Bolz Thomas

机构信息

IMST, Kamp-Lintfort, Germany.

出版信息

Bioelectromagnetics. 2006 May;27(4):320-7. doi: 10.1002/bem.20218.

Abstract

An exposure system for investigation of volunteers during simulated GSM and WCDMA mobile phone usage has been designed. The apparatus consists of a dual band antenna with enhanced carrying properties that enables exposure for at least 8 h a day. For GSM a 900 MHz pulse modulated carrier was used. The QPSK modulated WCDMA signal at 1966 MHz comprises a power control scheme, which was designed for investigations of biological effects. The dosimetry of the exposure system by measurements and calculations is described in detail within this paper. It is shown that the SAR distribution of the antenna shows similar characteristics to mobile phones with an integrated antenna. The 10 g averaged localized SAR, normalized to an antenna input power of 1 W and measured in the flat phantom area of the SAM phantom, amounts to 7.82 mW/g (900 MHz) and 10.98 mW/g (1966 MHz). The simulated SAR(10 g) in the Visible Human head model agrees with measured values to within 20%. A variation of the antenna rotation angle results in an SAR(10 g) change below 17%. The increase of the antenna distance by 2 mm with respect to the human head leads to an SAR(10 g) change of 9%.

摘要

设计了一种用于在模拟GSM和WCDMA手机使用过程中对志愿者进行研究的暴露系统。该装置由具有增强承载特性的双频天线组成,能够每天至少暴露8小时。对于GSM,使用了900MHz脉冲调制载波。1966MHz的QPSK调制WCDMA信号包括一种功率控制方案,该方案是为生物效应研究而设计的。本文详细描述了通过测量和计算对暴露系统进行的剂量测定。结果表明,该天线的比吸收率(SAR)分布与集成天线手机具有相似的特性。在SAM人体模型的平面体模区域测量,归一化为天线输入功率1W时,10g平均局部SAR为7.82mW/g(900MHz)和10.98mW/g(1966MHz)。在可视人体头部模型中模拟的SAR(10g)与测量值的误差在20%以内。天线旋转角度的变化导致SAR(10g)变化低于17%。相对于人头,天线距离增加2mm会导致SAR(10g)变化9%。

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