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PD mechanism and pattern investigation for stator winding insulation of HV motors

机译:高压电机定子绕组绝缘的PD机理及图案研究

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The high voltage (HV) motor suffers from insulation failure due to long term partial discharge (PD) which is a great threat to its normal operation. This is why online monitoring and fault diagnosis of PD activities of HV motors is becoming more and more important to date. To perform the online monitoring of the PD activity, pattern distributions of the harmful PD should be understood to guarantee detecting accuracy in the fault identification process. In this paper, three types of partial discharge, including slot discharge, bar-to-bar discharge, and corona discharge at the junction section of the semi-conductive tapes and the corona release tapes, are induced using stator coils embedded into a stator core slot model. The phase resolved partial discharge (PRPD) representation is adopted to get distribution characteristics of the PD. The PD mechanisms are illustrated using dielectric barrier discharge model. The experimental results show that a sharp increase at the onset of the positive discharge could be helpful to distinguish slot discharge from corona discharge. The relatively high amplitude and the narrow section of the phase distribution of partial discharge at the positive half voltage cycle are chosen to characterize the bar-to-bar discharge. Because of the block of insulating medium, the discharge current cannot develop into spark or electric arc but could be turned to several visible stable discharge filaments.
机译:由于长期部分放电(PD),高压(HV)电动机具有绝缘故障(PD),这是对其正常操作的巨大威胁。这就是为什么HV电机PD活性的在线监测和故障诊断变得越来越重要到目前为止。为了执行PD活动的在线监测,应理解有害PD的模式分布,以保证检测故障识别过程中的准确性。在本文中,使用嵌入定子芯的定子线圈引起三种类型的局部放电,包括槽放电,条形放电和电晕释放胶带的连接部分。插槽模型。采用相位分辨的局部放电(PRPD)表示来获得PD的分布特性。使用介电阻挡放电模型说明PD机构。实验结果表明,正面放电的发作急剧增加可能有助于区分槽放电从电晕放电。选择相对高的幅度和正半电压循环在正半电压循环处的相位分布的窄部分,以表征条形到条形放电。由于绝缘介质块,放电电流不能发展成火花或电弧,但可以转向几个可见的稳定放电长丝。

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