6 gas-insulated apparatuses will cause unexpected failure. In this pap'/> Partial Discharge Characteristics of Typical Insulation Defect under AC and Impulse Superimposed Voltage in SF6 Gas
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Partial Discharge Characteristics of Typical Insulation Defect under AC and Impulse Superimposed Voltage in SF6 Gas

机译:SF6气体AC下典型绝缘缺陷的局部放电特性及脉冲叠加电压

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Partial discharge (PD) in SF6 gas-insulated apparatuses will cause unexpected failure. In this paper, a test platform capable of generating AC and impulse superimposed voltage with controllable phase is built. Surface defect, free particle, void defect and floating potential defect models are designed and tested. The PD behaviors of the four typical insulation defects under AC and standard switching impulse superimposed voltages are experimentally investigated in SF6 gas. When the AC voltage is 90% PD inception voltage (PDIV), the standard switching impulse with amplitude of about twice the PDIV is superimposed on 90° of the AC voltage. Results show that PDs under AC voltage can be excited after switching impulse. There are obvious differences in partial discharge characteristics of different insulation defects after switching impulse. The duration of AC PDs excited by switching impulse is differences for the four typical insulation defects. These results are meaningful findings for rationalizing epoxy insulation while maintaining its reliability.
机译:SF中的局部放电(PD) 6 气体绝缘设备会导致意外故障。本文建立了一种测试平台,其能够产生具有可控相位的AC和脉冲叠加电压的测试平台。设计并测试了表面缺陷,自由粒子,空隙缺陷和浮动潜在缺陷模型。在AC和标准切换脉冲下的四种典型绝缘缺陷的PD行为在SF中实验研究了叠加电压 6 气体。当AC电压为90%PD Incepion电压(PDIV)时,具有大约两倍PDIV的标准开关脉冲叠加在AC电压的90°上。结果表明,交流电压下的PD可以在切换脉冲后激发。切换脉冲后不同绝缘缺陷的局部放电特性存在明显差异。通过切换脉冲激发的AC PD的持续时间是对四种典型绝缘缺陷的差异。这些结果是有意义的,用于合理化环氧绝缘的同时保持其可靠性。

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