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A Study of the Propagation Behaviour of Partial Discharge Pulses in the High-Voltage Winding of Hydro Generators

机译:水电发电机高压绕组中偏放电脉冲的传播行为研究

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摘要

Rotating electrical machines are one of the key assets for a reliable power supply. An unplanned outage of such components can lead to high follow-up costs. To prevent such unexpected occurrences the partial discharge (PD) diagnosis can be a reliable instrument for detecting failures in the insulation system before major damage or a breakdown occurs. However, there have been repeated instances where the measurable apparent charge on the terminals does not correlate with damages found during inspection or repair. One important reason is the fact that PD-measuring systems with high bandwidth can only accurately measure PD-sources, which are located close to the terminals. The investigation described in this contribution is intended to enhance the understanding of the propagation behaviour of PD pulses in a stator winding. The goal of these tests is to contribute to a reliable identification of hidden PD symptoms in the stator winding insulation. To reach this goal, artificial PD impulses are injected at different parts of the winding of two different hydro generators. They are different in their physical size and electrical parameters. These artificial PD impulses are compared to "real" PD impulses triggered by an electrode arrangement, as close to the artificial injection as possible, in the smaller of the two hydro generators. Measurements at the terminals of the stator windings are performed using both, the frequency selective PD system and a wide band digital oscilloscope. The result of the frequency selective measurement is a so-called "attenuation matrix", where the dependence of the location of injection and the corresponding measurement of the apparent charge recorded at the terminals is presented for different filter bandwidths. The analysis of recorded signals at the terminals of the stator winding shows strong damping phenomena for the high frequency content of the pulse and demonstrates the benefits of the frequency selective measurement.
机译:旋转电机是可靠电源的关键资产之一。无计划的这些组件的中断可能导致高度后续成本。为了防止这种意外的发生,局部放电(PD)诊断可以是用于在主要损坏或发生故障之前检测绝缘系统中的故障的可靠仪器。然而,已经重复的情况下,终端上可测量的表观电荷与检查或修理期间发现的损坏不相关。一个重要原因是,具有高带宽的PD测量系统只能准确测量位于终端的PD源。本贡献中描述的研究旨在增强对定子绕组中PD脉冲的传播行为的理解。这些测试的目标是有助于定子绕组绝缘中隐藏的PD症状的可靠鉴定。为了实现这一目标,人造PD脉冲注入两种不同的水力发电机的绕组的不同部分。它们的物理尺寸和电气参数不同。将这些人造PD脉冲与由电极布置触发的“真实”的PD脉冲进行比较,尽可能靠近人造注射,在两个水力发电机的较小中。使用两者,频率选择PD系统和宽带数字示波器进行定子绕组端子的测量。频率选择性测量的结果是所谓的“衰减矩阵”,其中针对不同的过滤器带宽呈现注射位置和记录在终端处的表观电荷的相应测量的依赖性。定子绕组端子处的记录信号的分析显示了脉冲高频含量的强度阻尼现象,并展示了频率选择性测量的益处。

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