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Method to Eliminate Flux Linkage DC Component in Load Transformer for Static Transfer Switch

机译:用于消除静态转换开关负载变压器中的磁通连杆DC分量的方法

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Many industrial and commercial sensitive loads are subject to the voltage sags and interruptions. The static transfer switch (STS) based on the thyristors is applied to improve the power quality and reliability. However, the transfer will result in severe inrush current in the load transformer, because of the DC component in the magnetic flux generated in the transfer process. The inrush current which is always 2~30 p.u. can cause the disoperation of relay protective devices and bring potential damage to the transformer. The way to eliminate the DC component is to transfer the related phases when the residual flux linkage of the load transformer and the prospective flux linkage of the alternate source are equal. This paper analyzes how the flux linkage of each winding in the load transformer changes in the transfer process. Based on the residual flux linkage when the preferred source is completely disconnected, the method to calculate the proper time point to close each phase of the alternate source is developed. Simulation and laboratory experiments results are presented to show the effectiveness of the transfer method.
机译:许多工业和商业敏感载荷受电压凹凸和中断的影响。应用基于晶闸管的静态传输开关(STS)以提高功率质量和可靠性。然而,由于在转移过程中产生的磁通量中的DC分量,转印将导致负载变压器中的严重浪涌电流。浪涌电流始终为2〜30 p.u.可以引起继电器保护装置的抑制,并对变压器带来潜在的损坏。消除DC部件的方法是当载荷变压器的残留磁通连杆和交替源的预期通量连杆时转移相关阶段。本文分析了传输过程中每次绕组的磁通连杆的变化。基于在优选源完全断开时的残留磁通连杆,开发了计算适当时间点以关闭备用源的每个阶段的方法。提出了模拟和实验室实验结果以表明转移方法的有效性。

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