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Determination of partial discharge time lag in void using physical model approach

机译:使用物理模型方法确定空隙中的局部放电时间滞后

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Repetition of partial discharge (PD) activities within a dielectric insulation of high voltage equipment may lead to dielectric breakdown, eventually resulting in failure of the whole equipment. Thus, PD measurement is essential in high voltage insulation system. Modeling of PD activity may increase an understanding of PD phenomenon. One of the parameters which can be determined from PD modeling is the statistical time lag. In this work, a physical model of PD using finite element analysis (FEA) method has been developed to determine the relationship of statistical time lag with different applied stresses; these include different applied voltage, frequency and temperature. The statistical time lag as a function of different applied stresses was determined through comparison between measurement and simulation results. The proposed experimental-modeling approach may increase an understanding on the physical explanation about the statistical time lag.
机译:在高压设备的电介质绝缘内重复进行局部放电(PD)活动可能导致电介质击穿,最终导致整个设备故障。因此,PD测量在高压绝缘系统中至关重要。 PD活动的模型可以增加对PD现象的了解。可以从PD建模确定的参数之一是统计时滞。在这项工作中,已经开发了使用有限元分析(FEA)方法的PD物理模型,以确定统计时滞与不同施加应力之间的关系。这些包括不同的施加电压,频率和温度。通过比较测量结果和仿真结果,确定了统计时滞与不同施加应力的关系。提出的实验建模方法可以增加对有关统计时滞的物理解释的理解。

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