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Influence of LV Neutral Grounding on Global Earthing Systems

机译:低压中性点接地对全球接地系统的影响

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摘要

International Standards define a Global Earthing System as an earthing net created interconnecting local Earthing Systems (generally through the shield of MV cables and/or bare buried conductors). In Italy, the regulatory authority for electricity and gas requires distributors to guarantee the electrical continuity of LV neutral conductor. This requirement has led to the standard practice of realizing “reinforcement groundings” along the LV neutral conductor path and at users' delivery cabinet. Moreover, in urban high-load scenarios (prime candidates to be part of a Global Earthing System), it is common that LV distribution scheme creates, through neutral conductors, an effective connection between grounding systems of MV/LV substations, modifying Global Earthing System consistency. The aim of this paper is to evaluate the effect, in terms of electrical safety, of the aforementioned LV neutral distribution scheme when an MV-side fault to ground occurs. For this purpose, simulations are carried out on a realistic urban test case and suitable evaluation indexes are proposed.
机译:国际标准将全球接地系统定义为与本地接地系统(通常通过中压电缆和/或裸露的导体的屏蔽层)互连的接地网。在意大利,电力和天然气监管机构要求分销商确保LV中性导体的电气连续性。此要求导致了在LV中性导体路径和用户交付机柜处实现“加强接地”的标准做法。此外,在城市高负荷情况下(主要候选者将成为全球接地系统的一部分),低压配电方案通常通过中性导体在中压/低压变电站的接地系统之间建立有效的连接,从而修改全球接地系统。一致性。本文的目的是评估在发生MV侧接地故障时,上述LV中性配电方案在电气安全方面的影响。为此,在一个实际的城市测试案例上进行了仿真,并提出了合适的评估指标。

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