Electromagnetics and Matter Group, Universidad Politécnica de Cartagena, Campus Muralla, Cartagena, E-30202, Spain.
Electromagnetics and Matter Group, Universidad Politécnica de Cartagena, Campus Muralla, Cartagena, E-30202, Spain.
Environ Res. 2022 Sep;212(Pt D):113577. doi: 10.1016/j.envres.2022.113577. Epub 2022 May 28.
In a world with increasing systems accessing to radio spectrum, the concern for exposure to electromagnetic fields is growing and therefore it is necessary to check limits in those areas where electromagnetic sources are working. Therefore, radio and exposure maps are continuously being generated, mainly in outdoor areas, by using many interpolation techniques. In this work, Surfer software and Kriging interpolation have been used for the first time to generate an indoor exposure map. A regular measuring mesh has been generated. Elimination of Less Significant Points (ELSP) and Geometrical Elimination of Neighbors (GEN) strategies to reduce the measuring points have been presented and evaluated. Both strategies have been compared to the map generated with all the measurements by calculating the root mean square and mean absolute errors. Results indicate that ELSP method can reduce up to 70% of the mesh measuring points while producing similar exposure maps to the one generated with all the measuring points. GEN, however, produces distorted maps and much higher error indicators even for 50% of eliminated measuring points. As a conclusion, a procedure for reducing the measuring points to generate radio and exposure maps is proposed based on the ELSP method and the Kriging interpolation.
在一个越来越多的系统接入无线电频谱的世界中,人们对电磁场暴露的担忧日益增加,因此有必要检查电磁源工作区域的限制。因此,无线电和暴露图正在不断生成,主要是在户外地区,并使用许多插值技术。在这项工作中,Surfer 软件和克里金插值首次被用于生成室内暴露图。生成了一个规则的测量网格。提出并评估了消除次要点(ELSP)和消除邻居的几何方法(GEN)来减少测量点。通过计算均方根和平均绝对误差,将这两种策略与使用所有测量值生成的地图进行了比较。结果表明,ELSP 方法可以减少高达 70%的网格测量点,同时生成与使用所有测量值生成的地图相似的暴露图。然而,GEN 会生成扭曲的地图和更高的误差指标,即使只消除了 50%的测量点。总之,提出了一种基于 ELSP 方法和克里金插值的减少测量点以生成无线电和暴露图的方法。