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Partial Discharges Pulse Shape Analysis at AC and DC

机译:交流和直流下的局部放电脉冲形状分析

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Partial discharge (PD) signal analysis is a well-known tool for monitoring the conditions of insulation systems of electrical machines and equipment. Classical analyzes of PD are mostly based on the evaluation of the phase angle of the test voltage at which partial discharges occur. At the present, the partial discharge detection is mostly based on the measurement of charging currents that are needed to resume the voltage on the sample that was there before the partial discharge occurred. Other electrical methods are, for example, the scanning of an electromagnetic field emitted during a partial discharge. Another developed methodology in the field of measuring and analyzing partial discharges is the monitoring of pulse parameters of the detected discharge. Experiments suggest that measuring the rise and fall time of the pulse edges and amplitude measurements can evaluate the partial discharge signal. Especially this method could be very helpful at the moment when partial discharges at DC are studied and evaluated. The disadvantage of partial discharges at DC is the fact there is no phase and phase angle position for PD patterns recognition. Thus, another evaluation method development is necessary for PD recognition DC. There is presented in the study an experiment where the PD pulse shapes, in the manner of rise time and fall time, were investigated at laboratory PD models at both voltage types AC and DC. The PD models simulated corona discharges. Each individual pulse of a partial discharge can be detected by a suitable scanning impedance and viewed with fast digital oscilloscopes. As has been said, there is a presumption that different discharge arrangements or even variously degraded insulating materials have different waveforms of the sensed pulses. The main monitored parameters of individual pulses are their rise time and amplitude. Since the occurrence of partial discharge is essentially a random phenomenon, statistical analysis of a significant amount of data is required. A view of the behaviour of the partial discharge pulse in various cases of the discharge activity brings different results in the observation of the pulse rise time and its amplitude in the various observed setups. Monitoring the rise time and pulse amplitude is one way of evaluating partial discharges, regardless of their superimposed position on the sine wave of the supply voltage. Thus this PD monitoring could be a part of PD evaluation at DC. These pulse parameters together with other PD analysis at DC (as pulse sequence analysis) could be used to estimate the partial discharge type as well as to evaluate the deterioration of the insulation of electrical machines.
机译:局部放电(PD)信号分析是一种用于监视电机和设备绝缘系统状况的众所周知的工具。 PD的经典分析主要基于评估发生局部放电的测试电压的相角。目前,部分放电检测主要基于对充电电流的测量,该充电电流是恢复发生在部分放电之前的样品上的电压所需的。其他电方法是例如扫描在局部放电期间发射的电磁场。在测量和分析局部放电领域中另一种发达的方法是监视检测到的放电的脉冲参数。实验表明,测量脉冲边沿的上升和下降时间以及幅度测量可以评估局部放电信号。特别是在研究和评估直流局部放电时,该方法可能非常有用。 DC局部放电的缺点在于,没有用于PD模式识别的相位和相角位置。因此,PD识别DC需要另一种评估方法。这项研究提出了一个实验,其中在实验室PD模型中,在AC和DC两种电压类型下,以上升时间和下降时间的方式研究了PD脉冲形状。 PD模型模拟电晕放电。局部放电的每个单独脉冲都可以通过合适的扫描阻抗进行检测,并可以通过快速数字示波器进行查看。如已经说过的,假定不同的放电布置或者甚至各种劣化的绝缘材料具有不同的感测脉冲波形。各个脉冲的主要监视参数是其上升时间和幅度。由于局部放电的发生本质上是随机现象,因此需要对大量数据进行统计分析。局部放电脉冲在放电活动的各种情况下的行为视图在观察各种设置中的脉冲上升时间及其幅度方面会带来不同的结果。监视上升时间和脉冲幅度是评估局部放电的一种方法,而不论局部放电在电源电压的正弦波上的叠加位置如何。因此,此PD监视可能是DC的PD评估的一部分。这些脉冲参数以及其他在直流上的局部放电分析(作为脉冲序列分析)可用于估计局部放电类型以及评估电机绝缘性能的恶化。

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