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变压器内部电弧故障快速检测方法研究与对比OA北大核心CSTPCD

Research and Comparison on Rapid Detection Methods of Transformer Internal Arc Fault

中文摘要英文摘要

变压器内部短路电弧故障是变压器最危险、最严重的故障,极有可能造成变压器油箱的形变和破裂,乃至变压器油的燃烧与爆炸,对人员生命安全、变电站财产安全、电网运行安全都造成了严重威胁.实现变压器内部短路电弧故障的快速检测有利于及时发出断路器分闸信号,从而缩短电弧燃弧时间,减小电弧能量,降低燃爆可能性.为寻找适用于电弧故障快速检测的信号及特征,首先搭建了基于电容电感串联谐振的油中工频大电流电弧实验平台,并实现了油中工频电弧的电压、电流、压力波、光、电磁脉冲、气泡形态等关键电弧特性的测量;发现压力波存在前期快速振荡-后期持续上升两阶段,光信号存在间隔约10 ms的脉冲,电弧电流过零点时必定会产生电磁脉冲,上述压力波、光和电磁脉冲 3 种信号及其特性有望应用于变压器内部短路电弧故障的快速检测;最后对比了这3种故障检测方法的优缺点,并指出这些方法在工程实际应用前急需进一步解决的问题.

Internal short-circuit arc fault in a transformer is the most dangerous fault,and is very likely to cause trans-former tank deformation,rupture,and even transformer oil combustion and explosion,which is a serious threat to personnel's life safety,substation property safety,and power grid operation safety.Realizing the rapid detection of internal short-circuit arc fault in a transformer is conducive to timely signaling the breaker,so as to shorten the arc burning time,cut down the arc energy and reduce the possibility of ignition.To find the signals and characteristics suitable for rapid arc fault detection,we firstly establish an experimental platform of high-current power-frequency arc in oil based on series resonance of capacitor and inductor,and realize the measurements of the key arc characteristics such as voltage,current,pressure wave,light,electromagnetic pulse,and bubble shape.It is found that the pressure wave has two stages of rapid oscillation in the early stage and continuous rise in the late stage,the optical signal has a pulse with an interval of about 10 ms,and the electromagnetic pulse will be generated when the arc current crosses the zero points.The above three sig-nals of pressure wave,light and electromagnetic pulse are expected to be applied to the rapid detection of transformer internal short-circuit arc fault.Finally,we study and compare the advantages and disadvantages of the three fault detection technologies,and point out the problems that need to be solved urgently before the practical application of these methods.

贾云飞;贾双瑞;罗迅;汲胜昌;李斯盟

西安交通大学电工材料电气绝缘全国重点实验室,西安 710049

变压器内部短路故障;工频电弧;油中电弧;故障检测;压力波;光信号;电磁脉冲

transformer internal short circuit fault;power-frequency arc;arc in oil;fault detection;pressure wave;optical signal;electromagnetic pulse

《高电压技术》 2024 (005)

2158-2165 / 8

国家电网有限公司总部科技项目(特高压变压器/换流变内部高能量电弧放电特性及故障防御关键技术)(5108-202218280A-2-365-XG).Project supported by Science and Technology Program of the Headquarters of SGCC(Characteristics of High Energy Arc Discharge and Key Technol-ogy of Fault Prevention for UHV Transformers/Converter Transformers)(5108-202218280A-2-365-XG).

10.13336/j.1003-6520.hve.20230763

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