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Effectiveness of electrostatic shielding in suppressing the impact of fast transients on transformer insulation

机译:静电屏蔽在抑制快速瞬变对变压器绝缘的影响方面的有效性

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Transformers installed in wind and solar power plants require specific design considerations in order to protect them from the adverse effects of voltage distortions. A number of manufacturers practice the implementation of electrostatic shields in transformer windings to filter the transferred voltages. Although this method has shown some improvements, effectiveness of the electrostatic shielding for a broad frequency range requires further studies. Through an experimental study, the effectiveness of electrostatic shielding in alleviating the transfer of high frequency distortions from LV winding to HV winding and vice versa. To compare the internal field enhancement at different frequencies in the presence and absence of an electrostatic shield, the frequency response of the voltage distribution inside the transformer's winding is also measured and analyzed. The results have shown that at some frequencies, the shield is beneficial in suppressing the stress, while at some other frequencies it amplifies the transferred voltages.
机译:安装在风力和太阳能发电厂中的变压器需要特殊的设计考虑因素,以保护它们免受电压畸变的不利影响。许多制造商在变压器绕组中实施静电屏蔽,以过滤传输的电压。尽管此方法已显示出一些改进,但在宽频率范围内静电屏蔽的有效性仍需要进一步研究。通过一项实验研究,静电屏蔽在减轻高频失真从LV绕组到HV绕组的传递以及反之方面的有效性。为了比较在有和没有静电屏蔽的情况下不同频率下的内部磁场增强,还测量和分析了变压器绕组内部电压分布的频率响应。结果表明,在某些频率下,屏蔽层有助于抑制应力,而在其他一些频率下,屏蔽层可以放大传输的电压。

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