黄天超, 李志新, 黄奇峰, 徐敏锐, 刘文. 计量用低压电流互感器直流偏磁下的误差计算方法和特性研究[J]. 电网技术, 2025, 49(1): 373-380. DOI: 10.13335/j.1000-3673.pst.2023.2093
引用本文: 黄天超, 李志新, 黄奇峰, 徐敏锐, 刘文. 计量用低压电流互感器直流偏磁下的误差计算方法和特性研究[J]. 电网技术, 2025, 49(1): 373-380. DOI: 10.13335/j.1000-3673.pst.2023.2093
HUANG Tianchao, LI Zhixin, HUANG Qifeng, XU Minrui, LIU Wen. Study on Error Calculation Method and Characteristics of Measuring Low Voltage Current Transformer Under DC Bias[J]. Power System Technology, 2025, 49(1): 373-380. DOI: 10.13335/j.1000-3673.pst.2023.2093
Citation: HUANG Tianchao, LI Zhixin, HUANG Qifeng, XU Minrui, LIU Wen. Study on Error Calculation Method and Characteristics of Measuring Low Voltage Current Transformer Under DC Bias[J]. Power System Technology, 2025, 49(1): 373-380. DOI: 10.13335/j.1000-3673.pst.2023.2093

计量用低压电流互感器直流偏磁下的误差计算方法和特性研究

Study on Error Calculation Method and Characteristics of Measuring Low Voltage Current Transformer Under DC Bias

  • 摘要: 直流会使得电流互感器(current transformer,CT)铁心饱和造成二次电流畸变,影响电能计量的公平性。利用两段线性直线表示CT铁心励磁特性,结合直流和二次侧基波电流平衡方程,推导得到了直流偏磁下计量用低压CT比差和角差的简便计算公式。通过数值仿真计算,分析了CT误差特性与直流,互感器变比和一次侧交流电流有效值之间的变化关系。搭建了CT直流偏磁实验平台,对3种型号CT的角差和比差在不同工况下进行了实验测量。通过与仿真计算值进行对比,验证了理论公式和分析结论的正确性。研究成果可供工程上快速计算CT直流偏磁下误差数值使用,同时也可为评估实际运行的电流互感器遭受直流电流影响大小提供理论依据。

     

    Abstract: DC will saturate the core of the current transformer (CT) and cause secondary current distortion, affecting the fairness of electric energy measurement. Two linear lines are used to express the excitation characteristics of the CT core, and combining DC and secondary fundamental current balance equations, the simple calculation formula of ratio difference and angle difference of measuring low-voltage CT under DC bias are derived. The relationship between CT error characteristics and DC, transformer ratio, and primary current is analyzed through numerical simulation. The DC bias experiment platform of CT was built, and the angle difference and ratio difference of three types of CT were measured under different working conditions. The correctness of the theoretical formula and analysis conclusion is verified by comparing it with the simulation calculation value. The research results can be used to quickly calculate the error value of CT under DC bias in engineering and provide a theoretical basis for evaluating the magnitude of DC impact on actual operating current transformers.

     

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