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Earth Resistance Measurements in Urban Contexts: Problems and Possible Solutions

机译:城市环境中的地球抵抗测量:问题和可能的解决方案

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Both EN 50522 and IEEE Std. 81 propose the Fall of Potential Method (FPM) to carry out the measurement of the resistance to earth of an Earthing System (ES). However, in urban areas, the recommended distances between the ES and auxiliary electrodes are not easy to respect, due to the presence of buildings and tarmac. Moreover, unknown buried metallic parts, as well as the interconnection among the ESs made by the Distributor System Operator, could modify the earth potential profile of the area, affecting the measurement results. In this paper, the issues that could affect the measurement result if FPM is used in an urban context are presented. A parametric analysis, carried out with Comsol Multiphysics, quantifies the errors due to wrong positioning of the auxiliary electrodes with reference to the ES under test. In addition, a field measurement is described, emphasizing the main aspects that could compromise the results. Finally, practical suggestions to reduce errors are provided.
机译:en 50522和ieee std。 81提出了潜在方法(FPM)的下降,以进行接地系统的抗性的测量。 然而,在城市地区,由于建筑物和钙砂的存在,ES和辅助电极之间的建议距离并不容易尊重。 此外,未知的掩埋金属部件以及分配器系统操作员所制造的ESS之间的互连可以修改该区域的地球电位轮廓,影响测量结果。 在本文中,提出了如果在城市上下文中使用FPM,则可能影响测量结果的问题。 用COMSOL多体学进行的参数分析,通过参考被测ES来定量辅助电极的错误定位引起的误差。 另外,描述了现场测量,强调可能损害结果的主要方面。 最后,提供了减少错误的实际建议。

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