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利用混合模型提高计算人头有效介电和热性质的效率。

An efficient use of mixing model for computing the effective dielectric and thermal properties of the human head.

机构信息

Microwave Imaging and Space Technology Application Laboratory, Department of Electronics and Communication Engineering, Indian Institute of Technology Roorkee, Roorkee, 247667,, India.

Centre of Excellence: Nanotechnology, Indian Institute of Technology Roorkee, Roorkee, 247667,, India.

出版信息

Med Biol Eng Comput. 2018 Nov;56(11):1987-2001. doi: 10.1007/s11517-018-1828-x. Epub 2018 May 7.

Abstract

As a preventive measure against the electromagnetic (EM) wave exposure to human body, EM radiation regulatory authorities such as ICNIRP and FCC defined the value of specific absorption rate (SAR) for the human head during EM wave exposure from mobile phone. SAR quantifies the absorption of EM waves in the human body and it mainly depends on the dielectric properties (ε', σ) of the corresponding tissues. The head part of the human body is more susceptible to EM wave exposure due to the usage of mobile phones. The human head is a complex structure made up of multiple tissues with intermixing of many layers; thus, the accurate measurement of permittivity (ε') and conductivity (σ) of the tissues of the human head is still a challenge. For computing the SAR, researchers are using multilayer model, which has some challenges for defining the boundary for layers. Therefore, in this paper, an attempt has been made to propose a method to compute effective complex permittivity of the human head in the range of 0.3 to 3.0 GHz by applying De-Loor mixing model. Similarly, for defining the thermal effect in the tissue, thermal properties of the human head have also been computed using the De-Loor mixing method. The effective dielectric and thermal properties of equivalent human head model are compared with the IEEE Std. 1528. Graphical abstract ᅟ.

摘要

作为人体免受电磁(EM)波辐射的预防措施,国际非电离辐射防护委员会(ICNIRP)和联邦通信委员会(FCC)等 EM 辐射监管机构定义了手机 EM 波辐射下人类头部的比吸收率(SAR)值。SAR 量化了人体对 EM 波的吸收,它主要取决于相应组织的介电特性(ε',σ)。由于手机的使用,人体头部更容易受到 EM 波的辐射。人体头部是由多个组织组成的复杂结构,有许多层混合在一起;因此,准确测量人体头部组织的介电常数(ε')和电导率(σ)仍然是一个挑战。为了计算 SAR,研究人员正在使用多层模型,该模型在定义层的边界方面存在一些挑战。因此,本文尝试应用 De-Loor 混合模型提出一种在 0.3 到 3.0GHz 范围内计算人体头部有效复介电常数的方法。同样,为了定义组织中的热效应,也使用 De-Loor 混合方法计算了人体头部的热特性。等效人体头部模型的有效介电和热特性与 IEEE Std. 1528 进行了比较。图形摘要ᅟ。

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