首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Computations of SAR distributions for two anatomically based modelsof the human head using CAD files of commercial telephones and theparallelized FDTD code
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Computations of SAR distributions for two anatomically based modelsof the human head using CAD files of commercial telephones and theparallelized FDTD code

机译:使用商业电话的CAD文件和并行的FDTD代码计算两种基于人体解剖学模型的SAR分布

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摘要

A method for importing data from computer-aided design (CAD) files for a mobile telephone into finite-difference time-domain (FDTD) simulation software is described. Although the FDTD method is well suited for the bio-electromagnetic simulations and has become the method of choice for most researchers in this area, there may be some limitations to its use. Limitations include, the description of the source (e,g., the mobile telephone) and the fact that the FDTD method requires large amounts of memory and computational power. The size of the computational space is dependent upon both the physical size of the model and its resolution. Higher frequencies of operation require higher resolutions. This could place the solution of some problems outside the capabilities of the technique. Often the telephone has to be represented by a plastic covered metal box, which approximates the shape of the actual device. The paper addresses these problems. Wires and circuit boards inside the telephone can act as resonant elements if they are not shielded. This potential problem is also considered. The large problem size associated with high-resolution FDTD simulations is accommodated by the use of a parallel implementation of the FDTD method (run on an IBM SP-2). The techniques developed are used for two anatomically based head models that have been developed from magnetic resonance imaging (MRI) of two human subjects. The usefulness of the techniques developed and comparisons of the specific absorption rates (SARs) in the two models are discussed
机译:描述了一种从用于移动电话的计算机辅助设计(CAD)文件中将数据导入到有限差分时域(FDTD)模拟软件中的方法。尽管FDTD方法非常适合于生物电磁仿真,并且已成为该领域大多数研究人员的选择方法,但它的使用可能会受到一些限制。限制包括对源(例如,移动电话)的描述以及FDTD方法需要大量内存和计算能力的事实。计算空间的大小取决于模型的物理大小及其分辨率。更高的操作频率需要更高的分辨率。这可能会使某些问题的解决方案超出该技术的能力范围。通常,电话必须用一个塑料盖的金属盒代表,该金属盒近似于实际设备的形状。本文解决了这些问题。如果未屏蔽电话内的电线和电路板,它们可能会充当谐振元件。还考虑了这个潜在问题。通过使用FDTD方法的并行实现(在IBM SP-2上运行),可以解决与高分辨率FDTD仿真相关的大问题。所开发的技术用于两个基于解剖学的头部模型,这些模型是根据两个人类受试者的磁共振成像(MRI)开发而成的。讨论了开发的技术的实用性以及两种模型中比吸收率(SAR)的比较

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