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A practical approach to evaluation of accuracy of inductive current transformer for transformation of distorted current higher harmonics

机译:一种评估电感电流互感器转换畸变电流高次谐波精度的实用方法

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In this paper the concept is discussed for evaluation of accuracy of inductive current transformer (CT) for transformation of distorted current higher harmonics. In proposed method the composite error (transformer correction factor) is determined for various operating conditions of tested CT in respect of primary currents rms value, distortion and secondary winding load active power. In this practical approach distorted primary current generated for the tests contains multiple harmonics. The results of FFT analysis of measured composite error are used to simultaneously evaluate tested CT maximum current error and phase displacement of transformation for each of the distorted current harmonic. This enables reduction of both examination time and its cost. The usage of measured differentially composite error, for evaluation of accuracy of inductive CT for transformation of distorted current higher harmonics, ensures high accuracy of obtained results, at low costs of required measuring apparatus. Presented methodology, allows determination of the optimum range of tested CT's secondary winding load, at which it can be used for transformation of distorted currents with maximum accuracy.
机译:在本文中,讨论了用于评估感应电流互感器(CT)的准确度的概念,以评估畸变电流的高次谐波。在提出的方法中,针对初级电流有效值,失真和次级绕组负载有功功率,针对被测CT的各种工作条件确定复合误差(变压器校正因子)。在这种实际方法中,为测试生成的失真的一次电流包含多个谐波。对测量的复合误差进行FFT分析的结果用于同时评估每个畸变电流谐波的测试CT最大电流误差和相移。这使得能够减少检查时间及其成本。使用测得的微分复合误差来评估电感CT的精度以转换失真的电流高次谐波,可确保所需结果的高精度,而所需测​​量设备的成本却很低。提出的方法可以确定被测CT的次级绕组负载的最佳范围,在该范围内,它可以用于以最大的精度转换失真的电流。

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