基于时域有限差分技术的基站天线人体比吸收率测量分析

H. Tun, Khin Kyu Kyu Win, Z. Naing, Devasis Pradhan, P. K. Sahu
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引用次数: 0

摘要

本文采用时域有限差分技术对暴露在基站天线下的人体比吸收率进行了系统分析。本研究的目的是评估人体和移动基站对SAR的认知和意识。本文研究了人体对电磁波的吸收。利用基于二维物体的数据集,考虑不同的电参数,对人体进行了识别。在GSM 900频段,考虑了多个载波频率和输入功率为20 W/载波的情况下,暴露于辐射基站天线(BSA)的人体模型内的SAR。人体与牛血清白蛋白的距离(R)在0.1 ~ 5.0 m之间变化。当载频数为1且R = 0.1 m时,时域有限差分技术得到的全身平均SAR集中值为0.68 W/kg,随载频数R的增加或减少而减小。当载波频率数为1时,一般公众的安全距离为1.5米。通过与近年来相关系统开发情况的比较,该分析的性能精度达到了较高水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement Analysis of Specific Absorption Rate in Human Body Exposed to a Base Station Antenna by Using Finite Difference Time Domain Techniques
The system analysis of specific absorption rate (SAR) in human body exposed to a base station antenna by using finite difference time domain techniques was presented in this research works. The objectives of this work are to evaluate the knowledge and awareness about SAR among human body and mobile base station. The paper investigates the electromagnetic wave absorption inside a human body. The human body has been identified using dataset based on 2D object considering different electrical parameters.The SAR convinced inside the human body model exposed to a radiating base station antenna (BSA) has been considered for multiple numbers of carrier frequencies and input power of 20 W/carrier at GSM 900 band.The distance (R) of human body from BSA is varied in the range of 0.1 m to 5.0 m. For the number of carrier frequency equal to one and R = 0.1 m,the concentrated value of whole-body average SAR obtained by FDTD technique is found to be 0.68 W/kg which decreases either with increase of R or decrease of number of carrier frequencies. Safety distance for general public is found to be 1.5 m for number of carrier frequencies equal to one.The performance accuracy of this analysis meets the high level condition by comparing with the relevant system development in recent time.
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