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Comparative analysisof grounding systems formed by MV cable lines with either uninsulated or insulated metal sheath(s)

机译:中压电缆线与非绝缘或绝缘金属护套形成的接地系统的比较分析

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摘要

It is well known that medium-voltage (MV) paper-insulated cables essentially reduce the potentials appearing during a ground fault in substations located in urban surroundings. This is explained by the fact that these cables usually (normally) have an uncoated metallic sheath. Due to this, MV cable lines leaving a high-voltage/middle-voltage (HV/MV) substation act as long external grounding electrodes and spontaneously form one very large and complex grounding system around this substation. Cables with an insulated metallic sheath however, are progressively being more applied in contemporary power distribution practice. Consequently, the following quite logical question arises: how will a cable with such constructive characteristic influence the general conditions for solving the grounding problem of distribution substations, especially of those working in high-voltage (HV) networks with directly grounded neutral(s)? The analysis performed in this paper shows that, when applied these cables spontaneously form a grounding system which also exhibits excellent grounding performances.
机译:众所周知,中压(MV)纸绝缘电缆实质上可减少位于城市环境中的变电站接地故障期间出现的电势。这可以通过以下事实来解释:这些电缆通常(通常)具有未涂层的金属护套。因此,离开高压/中压(HV / MV)变电站的MV电缆线充当长的外部接地电极,并自发地在该变电站周围形成一个非常大且复杂的接地系统。然而,具有绝缘金属护套的电缆逐渐被广泛应用于当代配电实践中。因此,出现了以下十分合乎逻辑的问题:具有这种建设性特征的电缆将如何影响解决配电变电站接地问题的一般条件,尤其是那些工作在中性点直接接地的高压(HV)网络中的变电站?本文进行的分析表明,当应用这些电缆时,它们会自发形成接地系统,该接地系统也具有出色的接地性能。

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