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在 6GHz 以下频率下,对有人体头部模型和各种金属物体的电磁场暴露。

Electromagnetic field exposure to human head model with various metal objects at sub-6 GHz frequencies.

机构信息

Department of Electrical and Electronics Engineering, Akdeniz University, Antalya, Turkey.

出版信息

Electromagn Biol Med. 2023 Jul 3;42(3):114-122. doi: 10.1080/15368378.2023.2220736. Epub 2023 Jun 4.

Abstract

In recent years, the interactions of metal objects in human body with electromagnetic fields caused by devices working at fifth-generation (5G) frequencies have been studied by various researchers. A motivation behind this research was to evaluate the human body absorption of electromagnetic energy operating at sub-6 GHz 5G applications. According to this, the specific absorption rate (SAR) caused by new generation mobile phones was investigated in human heads wearing metal-framed spectacles and having metallic implants or earrings to analyse electromagnetic field exposure. A realistic human head model, including some metal objects, was numerically calculated, and analysed in terms of non-ionizing dosimetry. Simulations were carried out with the finite integration technique (FIT) based commercial software in the frequencies of 0.9, 1.8, 2.1, 2.45, 3.5 and 5 GHz, respectively. The maximum SAR of 14 × 10 W/kg for 10 g average tissue was calculated at 2.45 GHz frequency in the head model with earrings. The highest electric field strength of 0.52 V/m was observed at a 1.8 GHz frequency in the head model with all metal objects equipped. Results show that metal objects such as spectacles, dental implants and earrings can cause an increase in the SAR values for external biological tissues, and metal objects can behave as a kind of shield for deeper tissues. However, the obtained values are below the limits of international organisations.

摘要

近年来,各种研究人员研究了人体内部金属物体与工作在 5G 频率下的设备产生的电磁场之间的相互作用。这项研究的动机之一是评估人体对运行在 sub-6GHz 5G 应用中的电磁能的吸收。根据这一点,研究了在佩戴金属框眼镜且有金属植入物或耳环的人头上操作新代移动电话的比吸收率 (SAR),以分析电磁场暴露情况。一个包含一些金属物体的真实人类头部模型被数值计算,并从非电离剂量学的角度进行分析。使用基于有限积分技术 (FIT) 的商业软件,分别在 0.9、1.8、2.1、2.45、3.5 和 5GHz 的频率下进行了模拟。在带有耳环的头部模型中,在 2.45GHz 频率下,计算出的组织平均 10g 处的最大 SAR 为 14×10 W/kg。在装有所有金属物体的头部模型中,观察到的最高电场强度为 0.52V/m,频率为 1.8GHz。结果表明,眼镜、牙植入物和耳环等金属物体可能会导致外部生物组织的 SAR 值增加,并且金属物体可能会成为深层组织的一种屏蔽物。然而,所得到的值低于国际组织的限制。

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