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Valve saturable reactor iron losses of ultrahigh-voltage direct current converter

机译:超高压直流变换器的阀饱和电抗器铁损

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摘要

Thyristor-based line-commutated converters (LCCs) are widely used to achieve AC/DC and DC/AC power conversions in UHVDCs (ultrahigh-voltage direct currents) transmission. Valve saturable reactors are used to protect power thyristors. To improve the efficiency of bulk electricity transmission over long distance, the operating voltage and current of UHVDCs and therefore the thermal stresses applied to the valve saturable reactors have steadily increased over the last decades. Valve saturable reactor iron losses were studied by accounting for the reverse recovery characteristics of the valve thyristors and the non-linear characteristics of the saturable reactors. The impact of UHVDC current on valve saturable reactor iron losses was quantified and verified. The valve saturable reactor iron losses of an LCC are generated not only at the turn-on and turn-off periods of the valve, but also at the off-state of the valve. The amount of the losses are affected by the AC busbar stray capacitances of the converter, the valve firing and extinction voltages, the rates of change of valve commutation current, and the reverse recovery current of the valve thyristors. The conclusion obtained will help to understand better the forming mechanism of valve saturable reactor iron losses and optimise the valve saturable reactor design.
机译:基于晶闸管的线路换向转换器(LCC)被广泛用于实现UHVDC(超高压直流电)传输中的AC / DC和DC / AC电源转换。阀饱和电抗器用于保护功率晶闸管。为了提高长距离大容量输电效率,在过去的几十年中,特高压直流输电的工作电压和电流以及施加在阀可饱和反应堆上的热应力不断增加。通过考虑阀可控硅的反向恢复特性和可饱和电抗器的非线性特性,研究了阀可饱和电抗器的铁损。特高压直流电流对阀可饱和反应堆铁损的影响已被量化和验证。 LCC的阀可饱和反应堆铁损不仅在阀的开启和关闭期间产生,而且在阀的关闭状态下产生。损耗量受转换器的AC母线杂散电容,阀门启动和熄灭电压,阀门换向电流的变化率以及阀门晶闸管的反向恢复电流的影响。得到的结论将有助于更好地理解阀饱和反应堆铁损的形成机理,优化阀饱和反应堆的设计。

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