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Steady State Assessment of Shunt Compensated EHV Insulated Cables by Means of Multiconductor Cell Analysis (MCA)

机译:利用多导体单元分析(MCA)评估并联补偿超高压绝缘电缆的稳态

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The author has already presented some papers which allow studying cable systems by means of the multiconductor cell analysis (MCA). This method considers the cable system in its real asymmetry without simplified and approximated hypotheses. The multiconductor matrix procedure based on the use of admittance matrices, which account for the line cells (with earth return currents), different types of screen bonding, possible multiple circuits (single and double circuit or more), allows predicting the steady-state regime of any cable system. In the previous papers, these matrix algorithms have been presented with reference to a short extra-high voltage (EHV) double-circuit cross-bonded (CB) underground cable (UGC) system. Since the cable link was short, the shunt reactive compensation was not necessary and consequently not considered. In this paper the procedure is generalized in order to take into account three single-phase (or also one three-phase) reactors installed at the cable ends or also at intermediate locations.
机译:作者已经介绍了一些论文,这些论文允许通过多导体电池分析(MCA)研究电缆系统。该方法在没有简化和近似假设的情况下考虑了电缆系统的实际不对称性。基于导纳矩阵的多导体矩阵程序,该程序考虑了行单元(带有接地电流),不同类型的屏蔽键合,可能的多回路(单回路和双回路或更多),可预测稳态状态任何电缆系统。在先前的论文中,这些矩阵算法是针对短超高电压(EHV)双回路交联(CB)地下电缆(UGC)系统提出的。由于电缆线很短,因此不需要分流无功补偿,因此不予考虑。在本文中,对该过程进行了概括,以考虑安装在电缆末端或中间位置的三个单相(或一个三相)电抗器。

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