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The effect of high frequency, high voltage supply on the growth of electrical trees on cross linked polyethlyne insulation of power cables

机译:高频高压电源对电力电缆交联聚乙烯绝缘体上电树生长的影响

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摘要

Nowadays, all types of electrical equipment, including cables, are exposed to various power quality effects. The harmonics are among the severe power quality problems, which can directly affect the insulating material in cables and other power system elements. Cables are costly power system elements, which deserve special attention in this regard. Cross linked polyethylene cables are widely used in all parts of the power system. The insulation material of such cables is significantly affected by high frequencies appearing as harmonics in the supply voltage. In this paper, a high voltage, high frequency circuit is developed to create different voltage harmonic orders and to test cross linked polyethylene insulation under condition of 10 kV with frequency of 50, 150, 250, 350 Hz. Test circuit consists of high voltage resonance transformer and low voltage rectifier/inverter to generate high frequency waveform. This arrangement is a good simulation for the real life operation of such cables in harmonic-polluted grids. This paper shows the negative effect of high frequency, high voltage supply on the performance of cable appearing as a growth of electrical tree on XLPE insulation of power cables. Different shapes of electrical trees and growth patterns were obtained as a function of frequency variation. This is attributed to the intensive partial discharges and photo ionization occurring at high frequency. This work is of great importance for the transmission and distribution grids, which currently suffer from a high penetration level of harmonics exceeding the standards limits
机译:如今,所有类型的电气设备(包括电缆)都受到各种电能质量影响。谐波属于严重的电能质量问题,会直接影响电缆和其他电力系统元件中的绝缘材料。电缆是昂贵的电力系统元件,在这方面值得特别注意。交联聚乙烯电缆广泛用于电力系统的所有部分。此类电缆的绝缘材料会受到在电源电压中以谐波形式出现的高频的显着影响。本文开发了一种高压高频电路,以产生不同的电压谐波阶数,并在频率为50、150、250、350 Hz的10 kV条件下测试交联聚乙烯绝缘。测试电路由高压谐振变压器和低压整流器/逆变器组成,以产生高频波形。对于这种电缆在谐波污染电网中的实际运行而言,这种安排是一个很好的模拟。本文显示了高频,高压电源对电缆性能的负面影响,这种现象随着电气树对电力电缆XLPE绝缘层的增长而出现。根据频率变化获得了不同形状的电树和生长模式。这归因于在高频下发生的密集局部放电和光电离。这项工作对于输电和配电网非常重要,因为输电和配电网目前遭受的谐波渗透水平超过标准限制

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