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Compliance of non-sinusoidal or pulsed magnetic fields generated by industrial sources with reference to human exposure guidelines

机译:参照人体暴露准则,遵守工业来源产生的非正弦或脉冲磁场

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In this paper theory and methodology to analyze non-sinusoidal/pulsed fields created by industrial sources in the low frequency range are presented. The methodologies to analyze non-sinusoidal fields are introduced by recalling the fundamental electrostimulation mechanisms. Finally, a case study of a resistance spot welding gun is considered and the results are discussed. Regarding the resolution of the human model, it is found that using a 1 × 1 × 1 mm3 discretization and then apply a spatial averaging in a volume of 2 × 2 × 2 mm3 is almost equivalent to the direct use of a resolution equal to 2×2 × 2 mm3. Furthermore, several metrics to remove numerical artifacts are also tested. Some of them are based on the percentile filtering whereas others are based on a statistical procedure aimed to filter out the outliers in the numerical solution. It is pointed out that, for a localized exposure, the statistically based approaches goes in the direction to define a metric able to adapt to each specific exposure condition, the 99th percentile can underestimate the actual maximum that, on the contrary, it is better estimated by the 99.9th percentile.
机译:本文介绍了分析工业频率源在低频范围内产生的非正弦/脉冲场的理论和方法。通过回顾基本的电刺激机制,介绍了分析非正弦场的方法。最后,以电阻点焊枪为例进行了研究,并对结果进行了讨论。关于人体模型的分辨率,发现使用1×1×1 mm 3 离散化,然后在2×2×2 mm的体积中应用空间平均 3 几乎等于直接使用等于2×2×2 mm的分辨率 3 。此外,还测试了一些用于消除数字伪影的指标。其中一些基于百分位数过滤,而另一些基于统计程序,旨在滤除数值解中的异常值。需要指出的是,对于局部暴露,基于统计的方法朝着定义能够适应每种特定暴露条件的指标的方向发展,第99个百分位可以低估实际的最大值,相反,最好对其进行更好的估算排在第99.9个百分点。

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