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Specific Absorption Rates of Anatomically Realistic Human Models Exposed to RF Electromagnetic Fields From Mobile Phones Used in Elevators

机译:电梯中使用的手机在RF电磁场作用下的人体解剖学模型的比吸收率

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摘要

This paper presents a detailed numerical investigation to determine whether or not an increased specific absorption rate (SAR) in an adult using a mobile phone inside an elevator due to the multireflections of electromagnetic fields from the walls exceed the RF-exposure guidelines. A fully realistic heterogeneous human body model and an actual elevator size were employed. The nonuniform mesh finite-difference time-domain technique and a supercomputer were employed to obtain the SAR and other important parameters. The mobile phone was modeled as a λ/2 dipole antenna placed at a distance of 16 mm from the head. For computations, operating frequencies of 900, 1500, and 2000 MHz with transmitting power of 250 mW were used. Computed results show that the peak spatial-average 10-g SAR depends on the position of the passenger and the antenna against the elevator walls. We observed a substantial increase in the whole-body average SAR and peak 10-g SAR values of the passenger in the elevator over their respective free-space values. However, the maximum values obtained do meet the basic restrictions described in the international RF safety guidelines. For example, the maximum values of the whole-body average and peak spatial-average SAR were 4.4% and 78% of the international RF safety guideline, respectively.
机译:本文提出了一项详细的数值研究,以确定由于壁上电磁场的多次反射而导致使用电梯内移动电话的成年人中比吸收率(SAR)的增加是否超过了RF暴露准则。使用了完全逼真的异质人体模型和实际的电梯尺寸。利用非均匀网格有限差分时域技术和超级计算机来获得SAR和其他重要参数。手机建模为放置在距头部16毫米距离处的λ/ 2偶极天线。为了进行计算,使用900、1500和2000 MHz的工作频率以及250 mW的发射功率。计算结果表明,峰值平均10 g SAR取决于乘客和天线相对于电梯壁的位置。我们观察到,电梯中乘客的全身平均SAR和SAR峰值10-g SAR值大大超过了各自的自由空间值。但是,获得的最大值确实符合国际RF安全准则中所述的基本限制。例如,全身平均值和峰值空间平均值SAR的最大值分别是国际RF安全指南的4.4%和78%。

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