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首页> 外文期刊>映像情報メディア学会誌 >Electric Field Distributions Generated By A Wearable Device Using Simplified Whole Human Body Models
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Electric Field Distributions Generated By A Wearable Device Using Simplified Whole Human Body Models

机译:可穿戴设备使用简化的整个人体模型生成的电场分布

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摘要

In recent years, a communications system, the Body Area Network, which uses the human body as a transmission path has attracted attention, and there is increasing expectation that it will be used more widely. However, there are still several points on the signal transmission mechanism of using the human body in this way that remain to be clarified, and there has been little research into the interaction of electromagnetic waves and the human body. Therefore, we used the Finite Difference Time Domain (FDTD) method to calculate the E-field distributions around simple and realistic models of the whole human body in free space with a weareble device. Moreover, E-field calculations were carried out when the positions of the body were changed. Our results show that using the simple homogeneous whole human body model is valid for the E-field calculation, and the dominant component of the E-field is normal to the body/air interface in all the positions that the human body assumes in daily life. Furthermore, in the state where the human body is shunted to the Earth ground, it was shown clearly that the E-field distribution is not mostly different from when a body is floating in free space. It can be concluded that these results provide useful information in improving the design of wearable devices.
机译:近年来,以人体为传输路径的通信系统,即人体局域网已引起人们的关注,并且人们越来越期望将其广泛使用。但是,关于以这种方式使用人体的信号传输机制,仍然有很多要澄清的地方,关于电磁波与人体相互作用的研究还很少。因此,我们使用有限差分时域(FDTD)方法来计算可穿戴设备在自由空间中围绕整个人体的简单而逼真的模型周围的电场分布。而且,当身体的位置改变时,进行电场计算。我们的结果表明,使用简单的均匀整体人体模型对于电子场计算是有效的,并且在人体在日常生活中占据的所有位置,电子场的主导分量均垂直于人体/空气界面。此外,在人体被分流到地面的状态下,清楚地表明,电场分布与人体在自由空间中漂浮时的电场分布没有太大不同。可以得出结论,这些结果为改进可穿戴设备的设计提供了有用的信息。

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