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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Analysis of phase-resolved partial discharge patterns of voids based on a stochastic process approach
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Analysis of phase-resolved partial discharge patterns of voids based on a stochastic process approach

机译:基于随机过程方法的空隙的相分辨局部放电模式分析

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A method is presented for the determination of physical discharge parameters for partial discharges (PDs) of voids in solid insulation. Based on a recently developed stochastic theory of PD processes, a statistical analysis of a measured phase-resolved partial discharge (PRPD) pattern allows the determination of the relevant physical parameters like first electron availability or decay time constants for deployed charge carriers. These parameters can be estimated directly from the measured patterns without the need of performing simulations. Furthermore, error bounds for the parameter values can be given. The parameter estimation algorithm is based on the analysis of a contiguous region of the PRPD pattern where this region can be chosen nearly arbitrarily. Thus, even patterns with several active PD defects or patterns which are corrupted by noise can be analysed. The method is applied to a sequence of patterns of a void in epoxy resin. The change in first electron availability in the course of a day can be determined quantitatively from the data while the other physical parameters remain constant. [References: 37]
机译:提出了一种用于确定固体绝缘中空隙的局部放电(PDs)的物理放电参数的方法。基于最近开发的PD过程的随机理论,对所测量的相分辨局部放电(PRPD)模式进行统计分析,可以确定相关的物理参数,例如已部署电荷载流子的第一电子可用性或衰减时间常数。这些参数可以直接从测得的模式中估算出来,而无需执行仿真。此外,可以给出参数值的误差范围。参数估计算法基于对PRPD模式连续区域的分析,该区域可以几乎任意选择。因此,甚至可以分析具有几个有源PD缺陷的图案或被噪声破坏的图案。该方法被应用于环氧树脂中的一系列空隙图案。在一天的过程中,可以根据数据定量确定第一电子可用性的变化,而其他物理参数保持不变。 [参考:37]

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