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Experimental investigation of typical partial discharge signals in medium-voltage switchgear

机译:中压开关设备中典型局部放电信号的实验研究

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Partial discharges (PDs) phenomena in medium-voltage switchgears usually exist and are worth being paid more attention. In this paper, a kind of special switchgear cabinet and two kinds of typical PD sources is designed for the PD measurements. Based on the two typical PD models, measurement sensitivity and influence factors of above four kinds of detection methods are researched and analyzed. The experimental results show that Pulsed current (PC) method is the most sensitive to PD signals but it is also more sensitive to the electromagnetic disturbance. Holes on the switchgear cabinet are important for Acoustic Emission (AE) method. The cabinet materials and sensor positions have no significant influence on Transient earth voltage (TEV) signal. Impermeability magnetic material has more significant influence on preventing Ultra-high-frequency (UHF) signals transmission than the permeability magnetic material, which is unfavorable for detection of UHF signal. Larger holes on switchgear cabinet are beneficial to the measurement of UHF method. For the needle-plane model, the phase-resolved partial discharge (PRPD) graph changes from “ball” shape to the “M” shape as the voltage increases. Different from needle-plane model, PRPD graph of suspended-metal model exists significant stratification phenomena.
机译:中压开关柜中的部分放电(PDS)现象通常存在,值得注意。在本文中,设计了一种特殊的开关柜和两种典型的PD源用于PD测量。基于两个典型的PD模型,研究和分析了测量灵敏度和高于四种检测方法的影响因素。实验结果表明,脉冲电流(PC)方法对PD信号最敏感,但对电磁干扰也更敏感。开关柜上的孔对声发射(AE)方法很重要。机柜材料和传感器位置对瞬态接地电压(TEV)信号没有显着影响。不透冰磁性材料对防止超高频(UHF)信号的影响比渗透性磁性材料更具显着影响,这对于检测UHF信号是不利的。开关柜上的较大孔有利于测量UHF方法。对于针平面模型,随着电压的增加,相位分辨的局部放电(PRPD)曲线从“球”形状变为“M”形状。与针平面模型不同,悬浮金属模型的PRPD图存在显着的分层现象。

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