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Surface Discharge Characteristics under Different Rise Times and Fall Times of Positive Repetitive Square Voltage using Pulse Sequence Analysis

机译:使用脉冲序列分析的不同上升时间下的表面放电特性和阳性重复正方形电压的下降时间

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In this paper, the surface discharge pulses of PEEK (polyetheretherketone) are measured under different rise times and fall times of positive repetitive square voltage. There tends to be more discharge pulses in a single period when the voltage rise time or fall time is large enough. Pulse sequence analysis (PSA) is used to investigate the characteristics of surface discharge under different rise times and fall times by extracting the voltage when discharges occur and the voltage differences between consecutive discharge pulses. The results show that the forward discharge could occur at lower applied voltage and the back discharge could occur at higher applied voltage for the large voltage rise time or fall time. Besides, the previous discharge is correlated with the following discharge for the multiple discharges, and the total discharge quantity of two consecutive forward discharges or back discharges is approximately proportional to the voltage difference between them.
机译:在本文中,在阳性重复方电压的不同上升时间和下降时间下测量PEEK(聚醚醚酮)的表面放电脉冲。 当电压上升时间或下降时间足够大时,在单个时段中倾向于更放电脉冲。 脉冲序列分析(PSA)用于通过提取在出院时提取电压和连续放电脉冲之间的电压差来研究不同上升时间下的表面放电的特性和下降时间。 结果表明,前向放电可以在较低施加的电压下发生,并且在较高的电压上升时间或下降时间的升高施加电压下可能发生后退。 此外,先前的放电与用于多种放电的以下放电相关,并且两个连续的前向放电或后放电的总排出量与它们之间的电压差比成比例。

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