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Voltage Stress in a Transformer Winding During Very Fast Transients Caused by Breaker Closing Event

机译:由断路器合闸事件引起的非常快速的瞬变期间变压器绕组中的电压应力

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摘要

Transformers connected at the medium-voltage level in cable grids, such as wind park collection grids and industrial grids, are exposed to the stress of very fast transients. These electric transients are mainly generated during breaker switching operations and the rise time of the transient voltage in such systems is much shorter compared to the rise times of transients generated in transmission systems at a high-voltage level. In this paper, the internal voltage stress is studied during very fast transients generated during transformer energization. Instead of using a breaker, the energizing tests are performed using a low-impedance pulse generator that can generate lightning impulse-shaped waveforms and voltage steps with rise times varying between 35 and 500 ns. Experiments show that during very fast transients with a 35-ns rise time and 1-p.u. magnitude, the interturn voltage exceeds the level obtained with a lightning impulse-shaped voltage waveform of 4.4 pu. Furthermore, during a specific switching scenario with delta-connected transformers, where the winding is excited from both ends, the same 1-p.u./35-ns voltage step generates an interturn voltage that exceeds the 1-p.u. level, which is more than 2.5 times higher voltage stress than during a lightning impulse test.
机译:电缆网格(如风电场收集网格和工业网格)中以中压水平连接的变压器要承受非常快速的瞬态应力。这些电瞬变主要是在断路器开关操作期间产生的,并且与高压系统中输电系统中产生的瞬变的上升时间相比,此类系统中瞬变电压的上升时间要短得多。在本文中,研究了在变压器通电期间产生的非常快速的瞬变期间的内部电压应力。代替使用断路器,使用低阻抗脉冲发生器执行通电测试,该发生器可以生成闪电脉冲形状的波形和上升时间在35 ns至500 ns之间变化的电压阶跃。实验表明,在非常快的瞬态中,上升时间为35 ns,p.u为1 p。幅值最大时,匝间电压超过了以4.4 pu的雷电脉冲形电压波形获得的电平。此外,在使用三角形连接变压器的特定开关方案中,从两端励磁绕组,相同的1-p.u./35-ns电压阶跃产生的匝间电压超过1-p.u。级别,比雷电冲击测试期间高出2.5倍的电压应力。

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