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Numerical Dosimetry of Electromagnetic Pulse Exposures Using FDTD Method

机译:FDTD法测量电磁脉冲的剂量学

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摘要

A novel frequency-dependent finite-difference time-domain (FDTD) method, previously proposed by the author, is applied to numerical dosimetry of exposures by an electromagnetic (EM) pulse incident to biological bodies, which are characterized by four Cole-Cole relaxation terms. The proposed method applies the fast inverse Laplace transform to determine the time-domain impulse responses of the complex permittivity function and utilizes Prony's method to determine the infinite impulse response representation in thez-domain. The FDTD formulation for the update of the electric field is then directly derived by using thez-transformation. The validity of the method is demonstrated by the 3-D analyses of a homogeneous dielectric sphere and a multilayer sphere illuminated by an EM pulse. It is demonstrated that the numerical results of induced electric field distributions inside the spheres are in good agreement with those derived from Mie's theory over a broad frequency range, proving the validity of the proposed method. Finally, numerical dosimetry of a heterogeneous human head excited by an EM pulse is performed and specific energy absorption due to the pulse illumination is calculated by using the proposed method.
机译:作者先前提出的一种新颖的频率相关的有限差分时域(FDTD)方法被应用于通过入射到生物体的电磁(EM)脉冲进行曝光的数值剂量学,其特征是四个Cole-Cole弛豫条款。所提出的方法应用快速逆Laplace变换来确定复介电常数函数的时域冲激响应,并利用Prony方法来确定 n z n域。然后,使用 n z转换。该方法的有效性通过对均质介电球和由EM脉冲照射的多层球的3-D分析证明。结果表明,在较宽的频率范围内,球体内感应电场分布的数值结果与Mie理论推导的结果吻合良好,证明了该方法的有效性。最后,对电磁脉冲激发的异质人头进行了剂量学测定,并利用所提出的方法计算了由于脉冲照明而产生的比能量吸收。

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