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Influence of sympathetic inrush on voltage dips caused by transformer energisation

机译:交感神经涌入对变压器通电引起的电压倾斜的影响

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摘要

Energising a transformer with other adjacent transformers in service may induce sympathetic inrush that could lead to long duration voltage dips. This study addresses this issue through analysing voltage dip events observed on a 400/132 kV grid when energisations of several generator step-up transformers were performed. With the help of a number of field measurements of voltage dips involving sympathetic inrush, a detailed network model in alternative transients program/electromagnetic transients program has been developed and validated. Based on the network model, comprehensive simulation studies have been performed. In addition, because of the nature of multiple controlling parameters, sensitivity assessment has been carried out to identify the key influential parameters. It is found that the sympathetic inrush, although does not affect voltage dip magnitude, can prolong voltage dip duration by 143% under the worst energisation condition. The sympathetic inrush occurring in substation transformers gives rise to a network-wide sympathetic interaction, resulting in further prolonged voltage dips on the 132 kV grid. Finally, it is proven that application of static var compensator is able to speed up the voltage dip recovery. © The Institution of Engineering and Technology 2013.
机译:通电与服务其它相邻的变压器的变压器可能会诱发应涌流,它可能导致长的持续时间电压骤降。本研究通过分析在执行若干发电机升压变压器的电动机上观察到的400/132 kV网格上观察到的电压DIP事件来解决此问题。借助于涉及交感神经浪涌的电压DIPS的许多现场测量,已经开发并验证了替代瞬态程序/电磁瞬变程序中的详细网络模型。基于网络模型,已经进行了全面的仿真研究。此外,由于多种控制参数的性质,已经进行了敏感性评估以识别关键的影响力参数。结果发现,同情浪涌,虽然不影响电压倾倍幅度,但在最差的激励条件下,可以延长电压浸渍持续时间143%。在变电站变压器产生的涌流产生了网络范围交感神经相互作用,导致在132千伏电网进一步延长电压骤降。最后,证明了静态VAR补偿器的应用能够加速电压恢复。 ©2013年工程技术机构。

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