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首页> 外文期刊>Transactions on Environment and Electrical Engineering >Investigation on the Applicability of the Time Domain Analysis of Discharges in Gases for the Defect Identification at AC Voltage
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Investigation on the Applicability of the Time Domain Analysis of Discharges in Gases for the Defect Identification at AC Voltage

机译:气体放电时域分析在交流电压缺陷识别中的适用性研究

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摘要

The partial discharge diagnosis is an established instrument for the condition assessment of high voltage insulations and equipment. Under AC voltage stress the phase resolved pattern is of great significance in order to become aware of the type of fault. As a result of the inapplicability for DC voltage stress, approaches for alternative interpretation techniques such as the time domain analysis of partial discharges were identified in recent investigations. In these different types of fault are taken into account as well as different insulating media. The purpose of this paper is to investigate whether an analysis of the pulse shape is also applicable for the defect identification under AC voltage stress. By focussing on gaseous insulating media, contact noise and surface discharges are emulated in ambient air, whereas corona discharges are emulated in ambient air and oxygen. A method for analysing discharges, occurring in the negative and the positive half-wave of the test voltage, is proposed and discussed.
机译:局部放电诊断是用于评估高压绝缘和设备状态的成熟工具。在交流电压应力下,相变模式对于了解故障类型非常重要。由于直流电压应力的不适用性,在最近的研究中确定了替代解释技术的方法,例如局部放电的时域分析。在这些情况下,要考虑不同类型的故障以及不同的绝缘介质。本文的目的是研究对脉冲形状的分析是否也适用于交流电压应力下的缺陷识别。通过专注于气体绝缘介质,可以在环境空气中模拟接触噪声和表面放电,而在环境空气和氧气中模拟电晕放电。提出并讨论了一种分析在测试电压的负半波和正半波中发生的放电的方法。

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