SAR Computation Due to Wearable Devices by Using High-Resolution Body Models and FDTD Numerical Code

Greta Silla, L. Bastianelli, E. Colella, F. Moglie, V. M. Primiani
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引用次数: 1

Abstract

The specific absorption rate (SAR) determined by a wearable heart rate monitor device (HRMD) is computed. A full wave finite difference time domain (FDTD) code is adopted to compute the electromagnetic field inside a high resolution body model accounting for the permittivity and conductivity values of all human tissues. Also the antenna of the device is accurately modeled by the FDTD code. The percentage of power deposition in each single tissue is recovered. The code running on a supercomputer allows to repeat quickly a lot of simulations, showing the not negligible dependence of SAR values according to the device positioning on the body.
基于高分辨率人体模型和FDTD数值编码的可穿戴设备SAR计算
计算由可穿戴式心率监测设备(HRMD)确定的特定吸收率(SAR)。采用全波时域有限差分(FDTD)编码计算高分辨率人体模型内的电磁场,该模型考虑了人体各组织的介电常数和电导率。利用时域有限差分代码对天线进行了精确建模。每个组织中能量沉积的百分比被恢复。在超级计算机上运行的代码允许快速重复大量模拟,显示出根据设备在身体上的定位SAR值的不可忽略的依赖性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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