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A Study of the Pulse Propagation Behavior in a Large Turbo Generator

机译:大型涡轮发电机中脉冲传播行为的研究

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The experiment described in this paper was performed to gain a better understanding of the partial discharge (PD) pulse propagation behavior in the stator winding of a large turbo generator. The winding insulation was drilled at several locations in the slot section and in the end-winding area. A PD calibrator was used to inject artificial PD pulses at these locations. The pulses were then measured at different sites, including at the line terminal, using both a frequency-selective PD measurement system and a wideband digital oscilloscope. The results are displayed using an attenuation matrix where a normalized measured quantity is plotted as a function of distance from the sensor. Several different frequency bandwidths were used to demonstrate the advantages of the apparent charge measurement in the low frequency range. Two main pulse propagation modes are discussed in this paper: a) a slow mode and b) a fast mode. Different examples are used to show the effects of pulse attenuation and cross-coupling between bars in the end-winding area. In addition, some common industry practices related to PD measurement on stator windings are briefly discussed.
机译:进行本文中描述的实验是为了更好地理解大型涡轮发电机的定子绕组中的局部放电(PD)脉冲传播行为。绕组绝缘层在槽部分和端部绕组区域的多个位置钻孔。 PD校准器用于在这些位置注入人工PD脉冲。然后,使用频率选择性PD测量系统和宽带数字示波器在不同的位置(包括线路终端)测量脉冲。使用衰减矩阵显示结果,其中将归一化的测量量绘制为到传感器的距离的函数。使用几个不同的频率带宽来证明低频范围内视在电荷测量的优势。本文讨论了两种主要的脉冲传播模式:a)慢速模式和b)快速模式。使用不同的示例来显示脉冲衰减和端部绕组区域中棒之间的交叉耦合的影响。此外,简要讨论了一些与定子绕组上的局部放电测量有关的常见行业惯例。

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