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首页> 外文期刊>Physics in medicine and biology. >On the effects of straight metallic jewellery on the specific absorption rates resulting from face-illuminating radio communication devices at popular cellular frequencies
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On the effects of straight metallic jewellery on the specific absorption rates resulting from face-illuminating radio communication devices at popular cellular frequencies

机译:直金属首饰对流行蜂窝频率下的面部照明无线电通信设备产生的比吸收率的影响

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摘要

This paper presents simulated and measured phantom results for the possible effects that head worn jewellery may have on the relative levels of energy absorbed in the human head with cellular enabled mobile communication devices. The FDTD electromagnetic code used with simple and complex anatomical mathematical phantoms was used to consider the interactions of metallic jewellery, heads and representative sources at 900 and 1800 MHz. Illuminated metallic pins of different lengths were positioned in front of the face. Initially, a homogenous phantom was used to understand the relative enhancement mechanisms. This geometry allowed the results to be validated with the industry standard DASY4 robot SAR measurement system related to the CENELEC head. Jewellery pins were then added to an anatomically realistic head. The relative increase in the 1 g and 10 g SAR, due to a pin with a length 0.4. near the eyebrows of a complex, anatomically realistic head was approximately three times at 1800 MHz. Such pins increased the SAR averaged over a 1 g or 10 gmass by redistributing the energy absorbed inside the head and focusing this energy towards the area of the head nearest to the centre of the pin. Although, the pins increased the SAR, the SAR standards were not breached and the jewellery produced lower values than those of previous studies when the source was positioned close to the ear.
机译:本文介绍了模拟和测量的幻像结果,显示了佩戴头戴式首饰对具有蜂窝功能的移动通信设备在人体头部吸收的相对能量水平可能产生的影响。 FDTD电磁代码与简单和复杂的解剖学数学模型一起使用,被用于考虑金属珠宝,头部和代表声源在900和1800 MHz的相互作用。不同长度的发光金属销钉放置在正面。最初,使用同质体模了解相对增强机制。这种几何形状使得结果可以通过与CENELEC机头相关的行业标准DASY4机器人SAR测量系统进行验证。然后将珠宝别针添加到解剖学逼真的头部中。 1 g和10 g SAR的相对增加是由于引脚长度为0.4。在1800 MHz时,复杂的,解剖学上逼真的头部的眉毛附近大约是其三倍。通过重新分配磁头内部吸收的能量并将此能量集中到最靠近插针中心的磁头区域,此类插针将SAR平均提高了1 g或10 gmass。尽管这些插针提高了SAR,但当光源靠近耳朵放置时,SAR标准并未遭到破坏,并且珠宝产生的价值低于以前的研究。

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