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EvaIuation of high-voltage circuit breaker performance with a validated arc model

机译:通过验证的电弧模型评估高压断路器的性能

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A digital current-zero measuring system was used to monitor about 200 zero crossings of short-1ine fault currents in three designs of commercial high-voltage circuit breakers. The breakers were subjected to standard IEC 60056 tests in a high-power laboratory. With these results, an empirical arc model was derived, based on the series connection of three classical modified Mayr models. It was found that only three 'free' parameters, extracted from the arc voltage and current during the prezero period can describe the state of the breaker after each test. With this model, the margin of the interrupting capability could be directly obtained. A strong relation between this margin and the arc conductivity at current zero can be established. Independent of arcing time, arcing current and state of the breaker, it was found that the current zero conductivity must decrease to l--2ms (only depending on the design of the breaker) to make a successful interruption possible.
机译:在三种设计的商用高压断路器中,数字电流归零测量系统用于监视短1ine故障电流的大约200个零交叉点。断路器在大功率实验室中经过了标准IEC 60056测试。根据这些结果,基于三个经典改良Mayr模型的串联关系,得出了经验弧模型。已经发现,在预调零期间从电弧电压和电流中提取的只有三个“自由”参数可以描述每次测试后断路器的状态。使用该模型,可以直接获得中断能力的余量。可以在电流为零时在此裕度和电弧电导率之间建立牢固的关系。与起弧时间,起弧电流和断路器的状态无关,已发现电流零电导率必须减小到1--2ms(仅取决于断路器的设计)才能成功中断。

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