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Numerical analysis of lightning transient voltage distributions in HV converter transformer winding

机译:高压换流变压器绕组雷电暂态电压分布的数值分析

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High voltage (HV) converter transformer is one of the most important power equipment in DC transmission system. The determination of transient voltage distribution along the winding plays an important role in the insulation design of converter transformer. In this paper an equivalent circuit model for the single-phase converter transformer with the double wound windings has been established, which is mainly composed of longitudinal capacitance, longitudinal inductance and radial capacitance. Both finite element and analytical methods were applied in the calculation of winding capacitance parameters. A combined twelve-pulse rectifier equivalent circuit model, consisted of six single-phase converter transformer and twelve converter valves, was established by means of the PSCAD/EMTDC software. The maximum transient voltage on the terminals of six converter transformers caused by a lightening stroke to the DC transmission line was analyzed. And therefore, the transient voltage characteristics along six converter transformer windings, such as maximum potential distribution and the gradient voltage of each winding disk, were obtained, respectively. The calculated results show that voltage and gradient voltage corresponding to the conducting phase and the non-conducting phase transformers have the same variation trend. The maximum voltage occurs at the end of the winding next to the neutral point of the transformer, while the maximum gradient voltage locates at the head of the winding.
机译:高压(HV)换流变压器是直流输电系统中最重要的电力设备之一。确定沿绕组的瞬态电压分布在换流变压器的绝缘设计中起着重要作用。本文建立了具有双绕绕组的单相换流变压器的等效电路模型,该模型主要由纵向电容,纵向电感和径向电容组成。绕组电容参数的计算均采用了有限元分析方法。借助于PSCAD / EMTDC软件,建立了由六个单相换流变压器和十二个换流阀组成的十二脉冲整流器组合等效电路模型。分析了由于直流输电线路的雷击而在六个换流变压器的端子上产生的最大瞬态电压。因此,分别获得了沿着六个换流变压器绕组的瞬时电压特性,例如最大电势分布和每个绕组盘的梯度电压。计算结果表明,与导电相和非导电相变压器对应的电压和梯度电压具有相同的变化趋势。最大电压出现在靠近变压器中性点的绕组末端,而最大梯度电压位于绕组的头部。

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