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Short-circuit tests on current-limiting fuses: modelling of the test circuit

机译:限流熔断器的短路测试:测试电路的建模

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In the standard procedures for high power short-circuit testing of current-limiting fuses, the test circuit is conventionally characterised by the RMS test voltage, prospective current, frequency, closing angle, and power factor. From these parameters a constant RL equivalent circuit can be derived, which has been widely used in the modelling of fuse-breaking transients but recent studies have shown that this circuit model is inadequate. The frequency dependence of R and L has been investigated by fast Fourier transform analysis of fuse-breaking test transients obtained in a high-power short-circuit test laboratory, and the results show that, while L decreases slight, R increases greatly with frequency. The nominal power factor value provides only a measure of the DC resistance of the circuit. The frequency dependence of R must be taken into account for accurate modelling of the operation of current-limiting fuses.
机译:在限流熔断器大功率短路测试的标准程序中,测试电路通常以RMS测试电压,预期电流,频率,闭合角和功率因数为特征。从这些参数可以得出恒定的RL等效电路,该电路已广泛用于熔断器瞬态的建模中,但最近的研究表明该电路模型是不够的。通过在大功率短路测试实验室中对熔断器测试瞬变进行快速傅里叶变换分析,研究了R和L的频率相关性,结果表明,尽管L略有下降,但R随频率而大大增加。额定功率因数仅提供电路直流电阻的量度。为了对限流熔断器的操作进行精确建模,必须考虑R的频率依赖性。

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