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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Understanding surface discharge activity in copper sulphide diffused oil impregnated pressboard under AC voltages
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Understanding surface discharge activity in copper sulphide diffused oil impregnated pressboard under AC voltages

机译:了解交流电压下硫化铜分散油浸压板的表面放电活性

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摘要

The surface discharge injected current were measured by using High Frequency Current Transformer (HFCT). It is observed that the rise time of the current pulse is about 800ps. In addition, the rise time of the current pulses has not altered in copper sulphide (CuS) diffused Oil Impregnated Pressboard (OIP) material, but the width of the current signal has increased with the increase in the amount of copper sulphide diffusion into the pressboard. It is confirmed that the injected current pulse radiates Ultra High Frequency (UHF) signal and the dominant frequency of the UHF signal formed due to the surface discharge injected current is about 0.9 GHz. The characteristic frequency contents of the UHF signal formed due to surface discharge activity is the same with the virgin and copper sulphide diffused pressboard material. The surface discharge inception voltage is high with the virgin specimen compared with copper sulphide diffused oil impregnated paper insulating material and is the same irrespective of the amount of diffusion of copper sulphide to it. The Phase Resolved Partial Discharge (PRPD) analysis indicates that at the point of surface discharge inception, the discharge occurs at the peak of the applied AC voltage and when the applied voltage magnitude is increased, the discharge occurs at the rising portion of the applied AC voltage. The characteristics of the surface discharges formed are the same with the copper sulphide diffused oil impregnated pressboard material. It is noticed that with increase in ageing time, a reduction in partial discharge magnitude is observed. Attenuated total reflectance Fourier transform infra-red spectroscopy (ATR-FTIR) analysis was carried out to understand the characteristic changes that occur in the degraded zone formed due to surface discharges. The measurement of surface charge indicates that ageing of oil impregnated paper material increases the surface charge accumulation. Energy Dispersive Spectroscopy (EDS) confirms th- presence of copper and sulphur in the aged Oil Impregnated Pressboard material. The Atomic Absorption Spectroscopy (AAS) results indicate that the amount of copper content in pressboard material have increased with ageing time.
机译:通过使用高频电流互感器(HFCT)测量表面放电注入的电流。观察到电流脉冲的上升时间约为800ps。此外,电流脉冲的上升时间在硫化铜(CuS)扩散的油浸压板(OIP)材料中没有改变,但是电流信号的宽度随着硫化铜向压板中扩散量的增加而增加。可以肯定的是,注入的电流脉冲辐射了超高频(UHF)信号,并且由于表面放电注入电流而形成的UHF信号的主频约为0.9 GHz。由于表面放电活性而形成的UHF信号的特征频率含量与原始和硫化铜扩散压制板材料相同。与硫化铜扩散油浸纸绝缘材料相比,原始样品的表面放电起始电压高,并且无论硫化铜向其扩散的量如何,表面放电起始电压均相同。相分辨局部放电(PRPD)分析表明,在表面放电开始时,放电发生在施加的交流电压的峰值,并且当施加的电压幅度增大时,放电发生在施加的交流的上升部分电压。所形成的表面放电的特性与硫化铜扩散的浸油纸板材料相同。注意到随着老化时间的增加,观察到局部放电量的减小。进行了衰减全反射傅里叶变换红外光谱(ATR-FTIR)分析,以了解由于表面放电而形成的退化区域中发生的特性变化。表面电荷的测量表明,油浸纸材料的老化会增加表面电荷的积累。能量色散光谱法(EDS)证实了老化的浸油纸板材料中铜和硫的存在。原子吸收光谱法(AAS)结果表明,压榨板材料中的铜含量随着时效时间的增加而增加。

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