Yang Li, Ge Manling, Guo Jia, Wang Qingmeng, Jiang Xiaochi, Yan Weili
Key Laboratory of Electromagnetic Field and Electrical Apparatus Reliability, Hebei University of Technology, Tianjin, China.
Annu Int Conf IEEE Eng Med Biol Soc. 2007;2007:5294-7. doi: 10.1109/IEMBS.2007.4353536.
Finite-difference time-domain (FDTD) method and specific absorption rate (SAR) are employed here to study the relationship between the radiation of a mobile handset and the human being health. Nowadays, much more attention has been paid to the simulations for the effects of RF radiation on the particular organs, such as the eyes or the ears because they are more sensitive and more near to the working mobile. In the paper, the simulation of the RF fields is focused on the eyes model and the eyes with glasses of metal frame respectively. A planar inverted F antenna is used as an exposure source at 900 MHz. Under this case, the intensity of the electrical field is calculated and analyzed. Also, SAR is utilized to evaluate the absorption of the organs to the radiation. Through the simulation, the peak values of SAR per 1G tissue at the radiating power being 600mW are obtained. It is concluded that when people are wearing glasses of metal framework, the peak value of SAR is shown to be a little higher than the safety limits. It is suggested that the radiation from the mobile handset do more harmful effect on the eyes with the glasses of metal frameworks.
本文采用时域有限差分(FDTD)方法和比吸收率(SAR)来研究手机辐射与人体健康之间的关系。如今,射频辐射对特定器官(如眼睛或耳朵)影响的模拟受到了更多关注,因为这些器官更敏感且离工作中的手机更近。在本文中,射频场的模拟分别聚焦于眼睛模型和戴金属框架眼镜的眼睛。使用平面倒F天线作为900MHz的辐射源。在此情况下,计算并分析了电场强度。此外,利用SAR评估器官对辐射的吸收情况。通过模拟,得出了辐射功率为600mW时每1G组织的SAR峰值。结果表明,当人们佩戴金属框架眼镜时,SAR峰值略高于安全限值。建议手机辐射对戴金属框架眼镜的眼睛产生更大的有害影响。