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Experiments of DC human body resistance I: Equipment, setup, and contact materials

机译:直流人体电阻实验I:设备,装置和接触材料

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Direct Current (DC) applications have become more prevalent in recent years, primarily due to the increased usage of renewable energy and energy storage systems. A review of the existing safety standards and other literature shows that there are limited experimental data on DC human body resistance. In particular, no information was found by the authors describing the repeatability of DC body impedance and the effect of contact material and other variables. The experimental work described here investigated DC human body resistance and the effects of electrode contact material, wet or dry conditions of the skin, and the repeatability of body impedance for a given set of test conditions. Three male adult volunteers participated in this study; each volunteer completed twenty sets of experiments, with each set including four different combinations of test conditions. The results show that the electrode material has an influence on the measured body impedance when the voltage was less than 15 V, supporting the supposition that the observed nonohmic behavior is attributable to Schottky effects. The variability of the tests (measured by the use of the coefficient of variance) is higher at lower voltage and drops as the voltage increases. Wet conditions were found to provide more consistent test results than dry conditions. Due to the improved measurement consistency and its lowered impedance relative to dry conditions, data under wet conditions are preferred for further analysis. The time of day at which measurements were taken was also observed to have an effect with at least one of the test subjects.
机译:近年来,直流(DC)应用已变得越来越普遍,这主要是由于可再生能源和储能系统的使用增加。对现有安全标准和其他文献的回顾表明,有关直流人体抵抗力的实验数据有限。特别是,作者没有发现描述直流主体阻抗的可重复性以及接触材料和其他变量的影响的信息。在此描述的实验工作研究了直流人体电阻,电极接触材料的影响,皮肤的湿润或干燥状况,以及在给定的一组测试条件下人体阻抗的可重复性。三名男性成年志愿者参加了这项研究。每个志愿者完成了二十组实验,每组包括四种不同的测试条件组合。结果表明,当电压小于15 V时,电极材料会对所测得的人体阻抗产生影响,这支持了观察到的非欧姆行为归因于肖特基效应的假设。测试的可变性(通过使用变异系数来衡量)在较低的电压下较高,并且随着电压的升高而下降。发现潮湿条件比干燥条件提供更一致的测试结果。由于相对于干燥条件改善了测量一致性并降低了阻抗,因此最好在潮湿条件下进行数据分析。还观察到一天中进行测量的时间对至少一名测试对象有影响。

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