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Limiting Voltage Dips Inrush Currents When Energizing Power Transformers Controlled Switching of Gang Operated Switches-Theory and Case Study

机译:激励电源开关控制联动开关的开关时限制电压突降和浪涌电流-理论与案例研究

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Energization of power transformers from the grid may lead to excessive voltage drop (dip) and inrush currents. A major breakthrough in Controlled Switching Device (CSD) technology has however been achieved to mitigate these transients while energizing power transformers through simultaneous pole operated switches (gang operated), including 3-pole medium voltage switchgears (MV- 600V ∼ 69kV) and high voltage (HV > 69kV) circuit breakers (CBs). These “Point-On-Wave” devices mitigate the inrush current by controlling the energization instant of the power transformer relative to its core residual flux pattern. This paper covers the theory and case study of energizing power transformers using simultaneous 3-pole operated switches (3-p). It describes the basic theory to understand transformer inrush currents and then applies it to simultaneous energization of power transformers phases using gang operated switching apparatus. The negative effects of inrush currents are then described, including voltage dip. The transformer saturation is analyzed as a function of the transformer's residual flux, leading to a simple approach for the reliable prediction of inrush currents resulting from both random- and CSD controlled-operation of a 3-p switches. This concept is then verified by case studies, including the impact of transformer tap changers.
机译:电网中的电源变压器通电可能会导致过大的压降(dip)和浪涌电流。然而,在控制开关设备(CSD)技术方面已经取得了重大突破,可以缓解这些瞬变,同时通过同时的极点操作开关(联动操作)为电力变压器供电,包括三极中压开关设备(MV- 600V〜69kV)和高压(HV> 69kV)断路器(CB)。这些“波点式”设备通过控制电源变压器相对于其磁芯剩余磁通量模式的通电瞬间来减轻浪涌电流。本文介绍了使用同时3极操作式开关(3-p)向电力变压器供电的理论和案例研究。它描述了了解变压器浪涌电流的基本理论,然后将其应用到使用成组开关设备的电力变压器相的同时通电中。然后描述了浪涌电流的负面影响,包括电压骤降。根据变压器剩余磁通量对变压器饱和进行分析,从而得出一种可靠的预测浪涌电流的简单方法,该浪涌电流是由3p开关的随机和CSD控制操作共同产生的。然后,通过案例研究,包括变压器分接开关的影响,对该概念进行验证。

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