复合直流谐波电压下环氧树脂的电气树

M. Tian, B. Du, J. Su, Jin Li, L. W. Zhu, Y. Yu
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引用次数: 4

摘要

在高压直流输电系统中,谐波电压会通过直流侧和交流侧的换流变压器传递,从而造成直流电压质量的畸变。本文研究了在直流-谐波复合电压作用下环氧树脂模压中的电树过程。采用数码显微镜系统观察电树形过程。在直流电压为−20 kV至+20 kV范围内,施加电压采用不同的直流和谐波组合波形。采用宽长比对电树的生长过程进行二维描述。结果表明,直流电压幅值是影响电树过程的关键因素。在室温下,树形结构(支路和灌木支路)的分布很大程度上取决于直流电压的极性。在相同谐波电压下,负直流电压下的宽/长比大于正直流电压下的。同时,正直流电压更容易导致电气击穿。此外,在纯谐波电压下,环氧树脂中发现了“反向树”,当电气树桥接绝缘时,它从板电极向针电极生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical Tree in Epoxy Resin under Combined DC-harmonic Voltage
Harmonic voltage can be transferred by the converter transformer on AC and DC sides in high-voltage direct-current (HVDC), which can distort the DC voltage quality. This work investigates the electrical treeing process in molded epoxy resin under combined DC-harmonic voltage. A digital microscope system was employed to observe the electrical treeing process. With the DC voltage ranging from −20 kV to +20 kV, different combined waveforms of DC and harmonic voltage were used as the applied voltage. Width/length ratio was employed to describe the propagation process of electrical tree in two dimensions. Results show that the DC voltage amplitude is a key factor for the electrical treeing process. The distribution of tree structures (branch and bush-branch) depends greatly on the polarity of DC voltage in room temperature. Under the same harmonic voltage, the width/length ratio with negative DC voltage is larger than that with positive DC voltage. Meanwhile, positive DC voltage can lead to the electrical breakdown easier. In addition, ‘reverse tree’ has been found in epoxy resin in pure harmonic voltage, which grows from the plate electrode toward the needle electrode when the electrical tree has bridged the insulation.
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