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Assessment of outdoor radiofrequency electromagnetic field exposure through hotspot localization using kriging-based sequential sampling

机译:使用基于克里格的顺序采样通过热点定位评估室外射频电磁场

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摘要

In this study, a novel methodology is proposed to create heat maps that accurately pinpoint the outdoor locations with elevated exposure to radiofrequency electromagnetic fields (RF-EMF) in an extensive urban region (or, hotspots), and that would allow local authorities and epidemiologists to efficiently assess the locations and spectral composition of these hotspots, while at the same time developing a global picture of the exposure in the area. Moreover, no prior knowledge about the presence of radiofrequency radiation sources (e.g., base station parameters) is required. After building a surrogate model from the available data using kriging, the proposed method makes use of an iterative sampling strategy that selects new measurement locations at spots which are deemed to contain the most valuable information-inside hotspots or in search of them-based on the prediction uncertainty of the model. The method was tested and validated in an urban subarea of Ghent, Belgium with a size of approximately 1 km2. In total, 600 input and 50 validation measurements were performed using a broadband probe. Five hotspots were discovered and assessed, with maximum total electric-field strengths ranging from 1.3 to 3.1 V/m, satisfying the reference levels issued by the International Commission on Non-Ionizing Radiation Protection for exposure of the general public to RF-EMF. Spectrum analyzer measurements in these hotspots revealed five radiofrequency signals with a relevant contribution to the exposure. The radiofrequency radiation emitted by 900 MHz Global System for Mobile Communications (GSM) base stations was always dominant, with contributions ranging from 45% to 100%. Finally, validation of the subsequent surrogate models shows high prediction accuracy, with the final model featuring an average relative error of less than 2 dB (factor 1.26 in electric-field strength), a correlation coefficient of 0.7, and a specificity of 0.96.
机译:在这项研究中,提出了一种新颖的方法来创建热图,以精确查明在广阔的城市区域(或热点)中暴露于射频电磁场(RF-EMF)的暴露程度较高的室外位置,并使地方当局和流行病学家能够以有效评估这些热点的位置和光谱组成,同时绘制该区域暴露情况的全局图。而且,不需要关于射频辐射源的存在的先验知识(例如,基站参数)。在使用克里金法从可用数据中构建替代模型之后,所提出的方法利用了一种迭代采样策略,该策略在热点内或在热点中搜索被认为包含最有价值信息的地点选择新的测量位置,具体方法是基于热点模型的预测不确定性。该方法在比利时根特的市区分区中进行了测试和验证,面积约为1 km2。使用宽带探头总共进行了600次输入和50次验证测量。发现并评估了五个热点,其最大总电场强度在1.3至3.1 V / m的范围内,满足了国际非电离辐射防护委员会发布的针对公众暴露于RF-EMF的参考水平。在这些热点中进行的频谱分析仪测量显示出五个射频信号,它们对暴露有重要影响。 900 MHz全球移动通信系统(GSM)基站发出的射频辐射始终占主导地位,贡献率从45%到100%不等。最后,对后续替代模型的验证显示出较高的预测准确性,最终模型的平均相对误差小于2 dB(电场强度的系数为1.26),相关系数为0.7,特异性为0.96。

著录项

  • 来源
    《Environmental research》 |2013年第10期|184-191|共8页
  • 作者单位

    Department of Information Technology, Ghent University/iMinds, Gaston Crommenlaan 8, Box 201, B-9050 Ghent, Belgium;

    Department of Information Technology, Ghent University/iMinds, Gaston Crommenlaan 8, Box 201, B-9050 Ghent, Belgium;

    Department of Information Technology, Ghent University/iMinds, Gaston Crommenlaan 8, Box 201, B-9050 Ghent, Belgium;

    Department of Information Technology, Ghent University/iMinds, Gaston Crommenlaan 8, Box 201, B-9050 Ghent, Belgium;

    Department of Information Technology, Ghent University/iMinds, Gaston Crommenlaan 8, Box 201, B-9050 Ghent, Belgium;

    Department of Information Technology, Ghent University/iMinds, Gaston Crommenlaan 8, Box 201, B-9050 Ghent, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Radiofrequency electromagnetic; fields (RF-EMF); Human exposure; Exposure model; Hotspots; Surrogate modeling;

    机译:射频电磁字段(RF-EMF);人体暴露;曝光模型;热点;替代模型;

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