Toivonen Tommi, Toivo Tim, Puranen Lauri, Jokela Kari
STUK-Radiation and Nuclear Safety Authority, Helsinki, Finland.
Bioelectromagnetics. 2009 May;30(4):307-12. doi: 10.1002/bem.20478.
In this article, the exposure to radio frequency electromagnetic fields was studied in close proximity (distances of 10, 100, 300, and 600 mm) to six base station antennas. The specific absorption rate (SAR) in 800 mm x 500 mm x 200 mm box phantom as well as unperturbed electric field (E) in air was measured. The results were used to determine whether the measurement of local maximum of unperturbed electric field can be used as a compliance check for local exposure. Also, the conservativeness of this assessment method compared to the ICNIRP basic restriction was studied. Moreover, the assessment of whole-body exposure was discussed and the distance ranges presented in which the ICNIRP limit for local exposure could be exceeded before the limit for whole-body SAR. These results show that the electric field measurement alone can be used for easy compliance check for the local exposure at all distances and for all antenna types studied. However, in some cases when the local peak value of E was compared directly to the ICNIRP reference level for unperturbed E, the exposure was overestimated only very slightly (by factor 1.1) compared to the basic restriction for localized SAR in a human, and hence these results can not be generalized to all antenna types. Moreover, it was shown that the limit for localized exposure could be exceeded before the limit for the whole-body average SAR, if the distance to the antenna was less than 240 mm.
在本文中,研究了在距离六个基站天线很近的位置(距离分别为10、100、300和600毫米)的射频电磁场暴露情况。测量了800毫米×500毫米×200毫米箱式人体模型中的比吸收率(SAR)以及空气中的未受干扰电场(E)。结果用于确定未受干扰电场的局部最大值测量是否可用于局部暴露的合规性检查。此外,还研究了该评估方法与国际非电离辐射防护委员会(ICNIRP)基本限值相比的保守性。此外,还讨论了全身暴露的评估,并给出了在全身SAR限值之前可能超过ICNIRP局部暴露限值的距离范围。这些结果表明,单独的电场测量可用于对所有研究距离和所有天线类型的局部暴露进行简便的合规性检查。然而,在某些情况下,当将E的局部峰值直接与ICNIRP未受干扰E的参考水平进行比较时,与人体局部SAR的基本限值相比,暴露仅被高估了非常小的幅度(系数为1.1),因此这些结果不能推广到所有天线类型。此外,研究表明,如果距离天线小于240毫米,局部暴露限值可能在全身平均SAR限值之前被超过。