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Influence of zero sequence impedances of station auxiliary transformers on equipment performance under open-phase faults

机译:缺相故障下电站辅助变压器零序阻抗对设备性能的影响

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Primary open-phase faults on station auxiliary transformers (SATs) are characterized by the presence of voltage unbalance at the auxiliary equipment level that could lead to protective device tripping, increased motor acceleration times, overheating or failure to start critical safety loads, particularly in the nuclear power industry. The transformer primary to ground zero sequence impedance has a profound impact on the voltage balance on the secondary (equipment) level but its effects not been fully analyzed in the context of nuclear power plant operation. This study investigates the influence of zero sequence impedance to ground as seen from the transformer primary terminals during an open-phase condition on the performance of nuclear plant auxiliary equipment, in particular the effect on large motor starting and running performance. Dynamic models for the motors were employed and adapted to the sequence network representing the overall system. The resulting system was simulated for a number of open-phase conditions using transformer characteristics representative of the SATs encountered in the nuclear power industry. It was revealed that a lower value of this impedance has a beneficial effect on motor acceleration time and voltage balance for both starting and steady state conditions. The influence of neighboring transformers with a path to ground was also investigated and found to serve towards further improvement of performance.
机译:电站辅助变压器(SAT)上的主要断相故障的特征是辅助设备级存在电压不平衡,这可能导致保护装置跳闸,电动机加速时间增加,过热或无法启动关键的安全负载,尤其是在电网中。核电工业。变压器的一次接地零序阻抗对次级(设备)电平上的电压平衡产生了深远的影响,但在核电站运行的情况下尚未对其影响进行全面分析。这项研究调查了从零序阻抗到接地的零序阻抗(在缺相条件下)对核电站辅助设备性能的影响,特别是对大型电动机启动和运行性能的影响。采用了电机的动态模型,并使其适应于代表整个系统的顺序网络。使用代表核电行业中遇到的SAT的变压器特性,针对多种断相条件对所得系统进行了仿真。结果表明,在启动和稳态条件下,该阻抗的较低值都对电动机加速时间和电压平衡具有有益的影响。还研究了具有接地路径的相邻变压器的影响,发现这些变压器有助于进一步改善性能。

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