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The design of a hand-held K-factor meter using an air-core current transformer

机译:使用空心电流互感器的手持式K系数表的设计

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This paper describes in detail the design of a portable microcontroller-based K-factor meter, or transformer harmonic derating factor meter. This innovative instrument is based on the recently developed time domain method for K-factor determination. K-factor is measured from the ratio of the rms value of the time derivative of a current to the rms value of this same current. The meter employs the properties of an air-core current transformer, or Rogowski coil, to acquire the time derivative of a current and then numerical integration, of this digitized signal, to obtain the current waveform itself. This method avoids the noise of the numeric differentiation, characteristic of the time domain approach to K-factor measurement, as well as the computational effort of the fast Fourier transform in the frequency domain approach. In addition, the instrument incorporates thermal demand models for both K-factor and rms current to assess transformer harmonic heating over a user selected time interval. A prototype meter, using a MC68HC16 microcontroller, was built and tested with a variety of actual and synthesized power system waveforms.
机译:本文详细介绍了基于便携式微控制器的K系数表或变压器谐波降额系数表的设计。该创新仪器基于最新开发的时域方法进行K因子测定。 K系数是根据电流的时间导数的均方根值与该相同电流的均方根值之比来测量的。该仪表利用空心电流互感器或Rogowski线圈的特性来获取电流的时间导数,然后对该数字化的信号进行数值积分,从而获得电流波形本身。该方法避免了数值微分的噪声,时域方法进行K因子测量的特性以及频域方法中快速傅立叶变换的计算量。此外,该仪器还结合了针对K因子和均方根电流的热需求模型,以评估用户选择的时间间隔内的变压器谐波加热。使用MC68HC16微控制器构建了一个原型仪表,并用各种实际和合成的电源系统波形进行了测试。

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