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Exposure assessment of mobile phone base station radiation in an outdoor environment using sequential surrogate modeling

机译:使用顺序替代模型对室外环境中移动电话基站辐射的暴露评估

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摘要

Human exposure to background radiofrequency electromagnetic fields (RF-EMF) has been increasing with the introduction of new technologies. There is a definite need for the quantification of RF-EMF exposure but a robust exposure assessment is not yet possible, mainly due to the lack of a fast and efficient measurement procedure. In this article, a new procedure is proposed for accurately mapping the exposure to base station radiation in an outdoor environment based on surrogate modeling and sequential design, an entirely new approach in the domain of dosimetry for human RF exposure. We tested our procedure in an urban area of about 0.04km2 for Global System for Mobile Communications (GSM) technology at 900MHz (GSM900) using a personal exposimeter. Fifty measurement locations were sufficient to obtain a coarse street exposure map, locating regions of high and low exposure; 70 measurement locations were sufficient to characterize the electric field distribution in the area and build an accurate predictive interpolation model. Hence, accurate GSM900 downlink outdoor exposure maps (for use in, e.g., governmental risk communication and epidemiological studies) are developed by combining the proven efficiency of sequential design with the speed of exposimeter measurements and their ease of handling. Bioelectromagnetics 34:300-311, 2013.
机译:随着新技术的引入,人体暴露于背景射频电磁场(RF-EMF)的比例不断增加。确实需要对RF-EMF暴露进行量化,但主要由于缺乏快速有效的测量程序,因此尚无法进行可靠的暴露评估。在本文中,提出了一种新的过程,该过程可基于替代模型和顺序设计在室外环境中准确地映射到基站辐射的辐射,这是剂量学领域中用于人体RF辐射的全新方法。我们使用个人光度计在900MHz(GSM900)的全球移动通信系统(GSM)技术的约0.04km2市区测试了该程序。 50个测量位置足以获得粗糙的街道曝光图,确定高和低曝光的区域。 70个测量位置足以表征该区域的电场分布并建立准确的预测插值模型。因此,通过结合顺序设计的行之有效的效率与测光仪测量的速度及其易于操作性,开发出了精确的GSM900下行链路室外暴露图(例如,用于政府风险沟通和流行病学研究)。生物电磁学34:300-311,2013。

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