首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Evaluation of breakdown characteristics of oil-immersed transformers under non-standard lightning impulse waveforms - definition of non-standard lightning impulse waveforms and insulation characteristics for waveforms including pulses
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Evaluation of breakdown characteristics of oil-immersed transformers under non-standard lightning impulse waveforms - definition of non-standard lightning impulse waveforms and insulation characteristics for waveforms including pulses

机译:非标准雷电冲击波形下油浸式变压器的击穿特性评估-非标准雷电冲击波形的定义和包括脉冲在内的波形的绝缘特性

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To lower the insulation specifications (specifically, the lightning impulse withstand voltage) of oil-immersed transformers and thus cut the equipment cost while maintaining the high reliability in its insulation performance, it is necessary to grasp in an organized way the insulation characteristics under non-standard lightning impulse voltage waveforms that represent actual surge waveforms encountered in the field and compare them with the characteristics under the standard lightning impulse waveform quantitatively. As described in this paper, the first step in a series of study for the purpose above was taken by analyzing lightning surge waveforms and restriking surge waveforms such as disconnector switching surge waveforms at UHV, 500 kV, and 275 kV substations and identifying four typical non-standard lightning impulse waveforms with basic frequencies of 0.24 to 1.0 MHz. Then, two of these non-standard lightning impulse waveforms, the single-pulse waveform which is the most basic type and the waveform with a pulse in the crest and a subsequent flat section, were used to measure the breakdown voltage and the partial discharge inception voltage while changing the parameters, on three models that represent the insulation elements of windings of oil-immersed transformers. Then, the resultant average breakdown voltages were evaluated in terms of the overvoltage durations, leading to a result of formulating them in a unified way. In the tested range, the dielectric breakdown values under non-standard lightning impulse waveforms were higher, marking 52% at the maximum, than those under standard lightning impulse waveforms in all the cases, suggesting a possibility of lowering the insulation specifications of an oil-immersed transformer
机译:为了降低油浸式变压器的绝缘规格(特别是雷电冲击耐受电压),从而降低设备成本,同时又保持其绝缘性能的高可靠性,有必要有条理地掌握非油浸变压器的绝缘特性。标准雷电冲击电压波形,代表现场遇到的实际浪涌波形,并将其与标准雷电冲击波形下的特性进行定量比较。如本文所述,针对上述目的进行的一系列研究的第一步是通过分析雷击浪涌波形和重新激起浪涌波形,例如超高压,500 kV和275 kV变电站的隔离开关的浪涌波形并确定四个典型的非基本频率为0.24至1.0 MHz的标准雷电脉冲波形。然后,使用这两个非标准雷电脉冲波形中的两个,即最基本的单脉冲波形和波峰及随后的平坦部分中带有脉冲的波形,来测量击穿电压和局部放电开始在代表油浸式变压器绕组的绝缘元件的三个模型上,更改参数时的最大电压。然后,根据过电压持续时间评估所得的平均击穿电压,从而得到以统一方式制定它们的结果。在测试范围内,在所有情况下,非标准雷电冲击波形下的介电击穿值均高于标准雷电冲击波形下的介电击穿值,最大值为52%,这表明有可能降低油的绝缘规格。浸入式变压器

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