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Simulation and Experiment Research on the Effects of DC-Bias Current on the 500kV Power Transformer

机译:直流偏置电流对500kV电力变压器影响的仿真和实验研究

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In the paper, the effects of DC-bias current on the 500kV power transformer with three-phase five-limb core structure are investigated by calculation and experiment. First, the coupling field-circuit model is applied to simulate the DC-bias characteristics of power transformer, where the traditional magnetic circuit models are replaced by Maxwell's equations in the magnetic circuit. Then the no-load DC-bias experiment is made to investigate the endure ability of 500kV power transformer. It is seen that the calculated results are agreed well with the experimental results. The no-load currents of the 500kV power transformer are distorted and the THD increases under DC-bias. The even harmonic is increased first and then decreased with the increasing of DC injected current. The obtained results are significant for the manufacturer of power transformer and operation staff of power system.
机译:通过计算和实验研究了直流偏置电流对500kV三相五臂铁芯结构变压器的影响。首先,应用耦合场-电路模型来模拟电力变压器的直流偏置特性,其中传统的磁路模型由磁路中的麦克斯韦方程代替。然后进行无负载直流偏置实验,以研究500kV电力变压器的承受能力。可以看出,计算结果与实验结果吻合良好。在直流偏置下,500kV电力变压器的空载电流会失真,THD会增加。随着直流注入电流的增加,偶数谐波首先增加,然后减少。获得的结果对电力变压器制造商和电力系统运营人员具有重要意义。

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