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A high-current calibration system based on indirect comparison of current transformer and Rogowski coil

机译:基于电流互感器和Rogowski线圈间接比较的大电流校准系统

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The calibration of the protective current transformer (CT) is of particular importance, since its accuracy at high currents is crucial to the correct operation of the subsequent relay protection devices. Conventional calibration methods have been using an electromagnetic CT which contains an iron core as the standard CT. The iron core is big and difficult to manufacture for high-current measurement, and the serious residual magnetism of the iron core at high currents can lead to excessive measurement errors. This paper proposes a calibration system based on indirect comparison of CT and Rogowski coil, i.e. using an iron-core CT to correct the error of the Rogowski coil at low currents, which may be caused by the position of the current-carrying conductor and so on, and then using the calibrated Rogowski coil as the standard transformer at high currents for its good linearity and wide dynamic range, and there is no magnetic saturation. Since the output of the Rogowski coil needs to be integrated, an improved digital integrator based on direct current (dc) negative feedback is adopted, which can effectively eliminate the influences of temperature drift, time drift and dc offset caused by the analogue circuit. The measurement errors of each part of the calibration system have also been discussed, and the test results show that the accuracy of the system can reach up to the 0.05S Class and the uncertainties are 0.038% for ratio and 0.68' for phase in the range 500 A to 50 kA.
机译:保护性电流互感器(CT)的校准尤为重要,因为其在大电流下的精度对于后续继电保护装置的正确运行至关重要。常规的校准方法是使用电磁CT,它包含一个铁芯作为标准CT。铁芯大且难以制造用于大电流测量,并且铁芯在高电流下的严重剩磁会导致过多的测量误差。本文提出了一种基于间接比较CT和Rogowski线圈的校准系统,即使用铁芯CT校正低电流下Rogowski线圈的误差,这可能是由载流导体的位置等引起的。然后,在大电流下使用经过校准的Rogowski线圈作为标准变压器,因为它具有良好的线性度和宽动态范围,并且没有磁饱和。由于需要对Rogowski线圈的输出进行积分,因此采用了一种改进的基于直流(dc)负反馈的数字积分器,可以有效消除模拟电路引起的温度漂移,时间漂移和dc偏移的影响。还讨论了校准系统各部分的测量误差,测试结果表明,该系统的精度可以达到0.05S级,并且在该范围内,比例的不确定度为0.038%,相位的不确定度为0.68'。 500 A至50 kA。

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