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Safety Assessment of AC Grounding Systems Based on Voltage-Dependent Body Resistance

机译:基于电压相关人体电阻的交流接地系统安全性评估

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摘要

This paper presents the safety assessment of a grounding system at an indoor-type 161/23.9-kV substation based on voltage-dependent body resistance. For a grounding system to be safe, the maximum actual touch and step voltages should not exceed postulated safety criteria. Thus, the safety assessment of a grounding system is referred to a procedure by which the actual maximum touch and step voltages are computed and compared to the maximum allowable (safe) touch and step voltages. The safety criteria in terms of allowable body current have been defined by two widely accepted standards, i.e., the IEEE Std. 80 and the IEC 60479-1. Then, the allowable body current is translated into the allowable touch and step voltages. However, the two standards differ in their definitions of body resistance. The IEC 6047-1 provides data for the body resistance as a function of body voltage and data for the body resistance as a function of path, while the IEEE Std. 80 uses a constant value of 1000 for the body resistance. Thus, a comparison of allowable touch and step voltages computed by these two standards is included in this study.
机译:本文提出了一种基于电压依赖性人体电阻的室内161 / 23.9kV变电站接地系统的安全性评估。为了使接地系统安全,最大实际接触电压和阶跃电压不应超过假定的安全标准。因此,接地系统的安全性评估是指计算实际最大触摸电压和阶跃电压并将其与最大允许(安全)触摸电压和阶跃电压进行比较的过程。关于允许的体电流的安全标准已经由两个广泛接受的标准定义,即IEEE标准。 80和IEC 60479-1。然后,可允许的人体电流被转换为可允许的触摸电压和阶跃电压。但是,这两个标准对身体抵抗力的定义不同。 IEC 6047-1提供了作为体电压的函数的体电阻数据和作为路径的函数的体电阻数据,而IEEE标准提供了数据。 80使用1000的常数作为体电阻。因此,本研究中包括了由这两个标准计算得出的允许触摸电压和步进电压的比较。

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