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Stochastic Uncertainty Quantification of Eddy Currents in the Human Body by Polynomial Chaos Decomposition

机译:利用多项式混沌分解对人体涡流进行随机不确定度量化

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The finite element method can be used to compute the electromagnetic fields induced in the human body by environmental extremely low frequency (ELF) fields. However, the electric properties of tissues are not precisely known and may vary depending on the individual, his/her age and other physiological parameters. In this paper, we account for the uncertainties on the conductivities of the brain tissues and spread them out to the induced fields by means of a nonintrusive approach based on Hermite polynomial chaos, with the finite element method as a black box. After showing the convergence of the method, we compute the probability to be over the thresholds defined by the international guidelines for limiting exposure to electromagnetic fields published by ICNIRP.
机译:有限元方法可用于计算环境极低频(ELF)场在人体中感应的电磁场。但是,组织的电特性尚不明确,可能会因个人,其年龄和其他生理参数而异。在本文中,我们考虑了脑组织电导率的不确定性,并通过基于Hermite多项式混沌的非侵入式方法(以有限元法为黑盒)将其分布到感应场中。在证明了该方法的收敛性之后,我们计算出了概率,该概率超过了由ICNIRP发布的用于限制暴露于电磁场的国际准则所定义的阈值。

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