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VLF Dielectric Response and HF Localized Dielectric Discharge Measurement for Rotating Machine Insulation Assessment

机译:VLF介电响应和HF旋转机绝缘评估的局部介电放电测量

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摘要

This paper represents the very low frequency (VLF) dielectric response and high frequency (HF) localized dielectric discharge measurement for rotating machine insulation assessment. The integral conditions of stator winding insulation, the so-called aging condition, were investigated by the dielectric response measuring technique. The polarization and depolarization currents in the VLF range from 0.0001 to 1 Hz were measured under an external step electric field. The local conditions of stator winding insulation, the so-called weak spot condition, were examined by the partial discharge (PD) measuring technique. The PD pulse currents were detected by a capacitive sensor in a wide-band range, where the bandwidth of the measuring system was set between 30 kHz and 30 MHz. The medium voltage rotating machine rated 6.6 kV and 240 to 2,270 kW under different service conditions, i.e., new stator winding, moisture contamination, dirt contamination as well as thermally and severely aged insulation, was studied. Besides, four case studies on measuring the PD in service rotating machines rated 11-15 kV, 7100 to 211,000 kW as well as the attenuation of the PD pulses were conducted and demonstrated. With several case studies, this paper introduces new dielectric parameters, the so-called charge ratio (QR) and charge difference gradient (QDG), to identify the dielectric mechanism occurring in the stator winding insulation caused by the polarization and conduction processes. It can be concluded that the proposed parameters are a valuable tool for assessing the aging condition. In the case of the PD measurement, it was found that the PD pulse is strongly attenuated in the slot section. This paper also introduces the combination of both the dielectric response and PD measurement results, which can be very useful for assessing a complete insulation condition in the rotating machine. Moreover, the criteria for insulation conditions are suggested in this paper to evaluate the integral and local conditions for the rotating machine insulation. The local discharge in the machine causes electromagnetic waves, which may get released from the non-perfect characteristics of the enclosure. This signal may interfere with the functioning of other nearby electronic devices, especially the communication equipment. Therefore, maintaining the excellent condition of the insulation system by the proposed technique detailed in this paper will support the highly effective operational efficiency of the communication system as well.
机译:本文代表了用于旋转机器绝缘评估的极低频率(VLF)介电响应和高频(HF)局部介电放电测量。通过介电响应测量技术研究了定子绕组绝缘,所谓的老化条件的整体条件。在外部步骤电场下测量VLF的偏振和去极化电流在0.0001至1Hz。通过局部放电(PD)测量技术检查定子绕组绝缘的局部条件,所谓的弱点状况。通过宽带范围内的电容传感器检测PD脉冲电流,其中测量系统的带宽设定在30 kHz和30MHz之间。在不同的服务条件下,中等电压旋转机额定值6.6 kV和240至2,270千瓦,即,研究了新的定子绕组,水分污染,污垢污染以及热和严重的绝缘。此外,进行了四种案例研究,用于测量服务旋转机器中的PD,额定电机11-15 kV,7100至211,000 kW以及PD脉冲的衰减,并证明了PD脉冲的衰减。利用几个案例研究,本文介绍了新的介电参数,所谓的电荷比(QR)和电荷差梯度(QDG),以识别由偏振和导通过程引起的定子绕组绝缘中发生的电介质机构。可以得出结论,所提出的参数是评估老化条件的有价值的工具。在PD测量的情况下,发现PD脉冲在槽部分中强烈衰减。本文还介绍了介电响应和PD测量结果的组合,这对于评估旋转机器中的完全绝缘条件非常有用。此外,本文提出了绝缘条件的标准,以评估旋转机器绝缘的整体和局部条件。机器中的局部放电导致电磁波,这可能从外壳的非完美特性释放。该信号可能干扰其他附近电子设备的功能,尤其是通信设备。因此,通过本文详述的所提出的技术保持绝缘系统的优异条件将支持通信系统的高效运行效率。

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