首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >RFID system for newborn identity reconfirmation in hospital: Exposure assessment of a realistic newborn model and effects of the change of the dielectric properties with age
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RFID system for newborn identity reconfirmation in hospital: Exposure assessment of a realistic newborn model and effects of the change of the dielectric properties with age

机译:用于医院新生儿身份确认的RFID系统:真实的新生儿模型的暴露评估以及介电特性随年龄的变化的影响

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This paper addresses the exposure assessment of RFID devices for newborn identity reconfirmation. To that purpose, a realistic newborn model ("Baby") is used to evaluate by a computational approach the levels of exposure due to these devices. Considering the average technical specifications currently in use, the exposure matrix in Baby shows that the systems comply with the ICNIRP exposure guidelines. As second aim, the effects of the change of the tissue dielectric properties with age on the so called "exposure matrix" (set of induced magnetic and electric field together with the derived values of SAR) is addressed. Specifically, three different approaches proposed in literature for the age variation of the dielectric properties at 13.56 MHz (the working frequency of the RFID systems for these applications) have been implemented using the Baby geometrical model. The related exposure matrices were then compared with the results obtained using the adult properties. No clear trend can be identified on the exposure matrices obtained varying the dielectric properties at 13.56 MHz, although the results could suggest a trend toward the underestimation of the exposure using adult properties. (C) 2011 Elsevier Ltd. All rights reserved.
机译:本文介绍了用于新生儿身份确认的RFID设备的暴露评估。为此,使用现实的新生儿模型(“婴儿”)通过计算方法评估由于这些设备引起的暴露水平。考虑到当前使用的平均技术规格,Baby中的暴露矩阵表明该系统符合ICNIRP暴露准则。第二个目的是解决组织介电特性随年龄的变化对所谓的“曝光矩阵”(感应磁场和电场以及SAR导出值的集合)的影响。具体而言,文献中提出了三种不同的方法,用于在13.56 MHz(用于这些应用的RFID系统的工作频率)下介电性能的年龄变化,已使用婴儿几何模型实现了。然后将相关的暴露矩阵与使用成人属性获得的结果进行比较。尽管在13.56 MHz下改变介电特性而获得的曝光矩阵没有明确的趋势,但结果可能表明存在使用成人特性低估曝光的趋势。 (C)2011 Elsevier Ltd.保留所有权利。

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