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Comprehensive evaluation of the K-factor values in the lightning impulse voltage test techniques for UHV-class electric power equipment

机译:特高压级电力设备雷电冲击电压测试技术中K因子值的综合评估

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摘要

In the 2010 revision of IEC-60060-1 "High-voltage test techniques", the conversion of waveforms using the test voltage function (K-factor) was introduced as one of the major revisions. At present, in IEC TC42 "High-voltage and high-current test techniques," a study is conducted on the standards for the lightning impulse voltage test at WG 19 "Adaptation of TC 42 standards to UHV test requirements." The present paper comprehensively evaluates the experimental results of the K-factor values using the largest possible model assuming UHV-class electric power equipment, as well as the past experimental results of the K-factor values. Initially, these experimental results were evaluated from a view point of insulation properties to clarify the characteristics of the Kfactor values. The adaptation itself of the K-factor evaluation method to also cover UHVclass equipment is considered significant. However, for high-voltage class equipment, since the formative time lag of breakdown is longer due to the long insulation length, resulting in a longer breakdown time, the K-factor values are considered lower than the existing K-factor function. Subsequently, the experimental results of the K-factor values were comprehensively evaluated and compared with the existing K-factor function. The K-factor function may possibly have to be reviewed for UHV-class electric power equipment to take lower values than the existing K-factor function.
机译:在2010年修订的IEC-60060-1“高压测试技术”中,引入了使用测试电压函数(K因子)进行波形转换的主要版本之一。当前,在IEC TC42“高压和大电流测试技术”中,对WG 19“使TC 42标准适应UHV测试要求”的雷电冲击电压测试标准进行了研究。本文使用假设特高压级电力设备的最大可能模型,对K因子值的实验结果进行了综合评估,以及过去的K因子值实验结果。最初,从绝缘性能的角度评估了这些实验结果,以阐明Kfactor值的特征。 K因子评估方法本身也适用于特高压设备,这被认为具有重大意义。但是,对于高压类设备,由于绝缘长度长,击穿的形成时间滞后时间较长,导致击穿时间更长,因此认为K因子值低于现有的K因子函数。随后,对K因子值的实验结果进行了综合评估,并与现有的K因子函数进行了比较。对于UHV级电力设备,可能必须审查K因子函数,以使其值低于现有的K因子函数。

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