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Switching Mechanism and Simulation Study of Vacuum Type On-load Tap Changer in Converter Transformer

机译:变换器变压器中真空型载拖链机的切换机理及仿真研究

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The on-load tap changer (OLTC) is an important component in converter transformer, which is responsible for maintaining the stability of DC voltage and adjusting the trigger angle. With the complex operating conditions and the increase of switching capacity, the resistor type on-load tap changer with vacuum interrupters are widely used. The structure and working principle of vacuum type on-load tap changer are analyzed in this paper. In order to analyze the internal electrical characteristics of the on-load tap changer, a simulation model is built by PSCAD. The recovery voltage of interrupters and circulating current formulas are deduced. The simulation results are consistent with the theoretical analysis, which verifies the correctness of the simulation model. On this basis, it is pointed out that a large transition resistor leads to high recovery voltage of vacuum interrupter in the main branch, while a small transition resistor leads to large switched current of vacuum interrupter in the transition branch. Since the transition resistor is related to the breaking capacity of vacuum interrupter, the selection of the value of transition resistance should consider the match between the step voltage and the load current.
机译:载有载分接开关(OLTC)是转换器变压器中的重要组成部分,负责维持DC电压的稳定性并调节触发角度。随着复杂的操作条件和开关容量的增加,广泛使用具有真空中断器的电阻式载荷分接开关。本文分析了真空型载龙头变换器的结构和工作原理。为了分析载荷分接开关的内部电气特性,PSCAD构建了模拟模型。推导出中断器的恢复电压和循环电流式。仿真结果与理论分析一致,验证模拟模型的正确性。在此基础上,指出,大型过渡电阻导致主分支中的真空断续器的高回收电压,而小型过渡电阻导致过渡分支中的真空断路器的大开关电流。由于过渡电阻与真空断续器的断裂容量有关,因此过渡电阻值的选择应考虑步进电压和负载电流之间的匹配。

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