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Estimation of partial discharge inception voltage of magnet wires under inverter surge voltage by volume-time theory

机译:体积时间理论估计逆变器浪涌电压下电磁线的局部放电起始电压

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摘要

This paper discusses a novel estimation method for partial discharge inception voltage (PDIV) of magnet wire under inverter surge voltage application. We focused on the generation probability of initial electrons, which induce PD under high electric field and short rise time of surge voltage, by means of Volume-Time theory. We applied the Volume-Time theory to PD inception phenomena in a wedge-shaped air gap of twisted pair samples composed of enameled wires, and estimated PDIV in consideration of initial electron generation probability with temporal and spatial change in electric field distribution. We could estimate PDIV under different waveforms of applied surge voltage for different specifications of enameled wires. PDIV estimated by the extended Volume-Time theory agreed well with the measured PDIV. The estimated PDIV decreased with the increase in the rise time of applied voltage waveform, which corresponded to the V-t characteristics in the time range of inverter surge voltage.
机译:本文讨论了一种新的估算逆变器浪涌电压下电磁线局部放电起始电压(PDIV)的方法。我们利用体积-时间理论,研究了初始电子的产生概率,该初始电子在高电场和短时间的浪涌电压上升时间下感应PD。我们将体积-时间理论应用于由漆包线组成的双绞线样品的楔形气隙中的PD起始现象,并考虑到初始电子产生概率以及电场分布随时间和空间的变化来估计PDIV。对于不同规格的漆包线,我们可以在施加的浪涌电压的不同波形下估计PDIV。通过扩展的体积-时间理论估计的PDIV与测得的PDIV非常吻合。随着施加电压波形的上升时间的增加,估计的PDIV减小,这对应于逆变器浪涌电压时间范围内的V-t特性。

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