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In-situ measurement of the current transformer burden in a current transformer testing system using a shunt resistor

机译:使用分流电阻器在电流互感器测试系统中现场测量电流互感器负荷

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摘要

Both the ratio error and phase angle error of a current transformer (CT) are significantly affected by the CT burdenconnected in series to the secondary terminal of the CT. Thus, the precise measurement of this CT burden is required for the evaluation of the CT errors. A method for measuring the CT burden in-situ in a CT testing system (CTTS) has been developed by employing the non-reactive type shunt resistor. For the measurement of the CT burden, the shunt resistor was connected in parallel to the secondary terminal of the CT under test in the CTTS. The burden values represented by the apparent power and the power factor can be calculated from the resistance (and reactance), which was obtained by measuring the ratio error (and phase angle error) as a function of the resistance of the shunt resistor. The uncertainties in the measurements of the apparent power and the power factor for the rated burdens studied were found to be less than 2.1percent. The CT burden values obtained using our method were consistent with those measured using a digital multimeter within the corresponding uncertainties.
机译:电流互感器(CT)的比率误差和相角误差都受到串联连接到CT次级端子的CT负载的显着影响。因此,需要对该CT负担进行精确测量以评估CT误差。通过使用非电抗型并联电阻器,已经开发出一种在CT测试系统(CTTS)中就地测量CT负荷的方法。为了测量CT负载,在CTTS中将并联电阻并联到被测CT的次级端子上。视在功率和功率因数表示的负荷值可以通过电阻(和电抗)来计算,该电阻是通过测量作为分流电阻器电阻的函数的比率误差(和相角误差)而获得的。发现所研究的额定负荷的视在功率和功率因数的测量不确定度小于2.1%。在相应的不确定性范围内,使用我们的方法获得的CT负荷值与使用数字万用表测量的CT负荷值一致。

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