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Analysis of the DC Bias Effects on the UHV Autotransformer with Rated Load Based on a Reduced-Scale Model Experiment

机译:基于降低规模模型实验的额定载荷对UHV自耦变压器的直流偏置效应分析

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The DC bias of transformers as a result of geomagnetically induced currents (GIC), monopole operation of high voltage direct current (HVDC) transmission and the increasing power electronic devices in the power grid, creates a high magnitude of fundamental and harmonic components in winding currents, reactive power, and vibro-acoustic noise. For transformers with large capacity, it is very expensive and difficult to carry out an in-depth DC bias effects investigation on a practical equipment, especially for the ultra-high voltage (UHV) transformer. In this paper, a reduced-scale model (RSM) based on the principle of identical saturation degree is proposed, and the equivalent relationship of DC bias current is obtained. Furthermore, the DC bias platform with the RSM is established, experiments have been conducted to analyze the characteristics of the transformer under DC bias. It turns out from the experiments that the current of high voltage side and excitation are less tolerated to the DC bias current, the distortion occurs during the first half of the cycle and peaking at the quarter. Besides, the no-load loss and total harmonic distortion (THD) increase significantly with an increasing DC bias. The results of the characteristics of RSM with load under DC bias may provide great services in protecting and reducing the DC bias effects on the UHV transformer in actual operation.
机译:由于地磁诱导的电流(GIC)的变压器的直流偏压,高压直流(HVDC)传输的单极操作和电网中的增加的电力电子设备,在绕组电流中产生高度的基本和谐波分量,无功功率和振动声噪声。对于容量大的变压器,非常昂贵,难以对实际设备进行深入的直流偏置效应调查,特别是对于超高电压(UHV)变压器。本文提出了一种基于相同饱和度原理的减小规模模型(RSM),获得了DC偏置电流的等效关系。此外,建立了具有RSM的DC偏置平台,已经进行了实验以分析DC偏压下变压器的特性。事实证明,从实验结果,高压侧和激励的电流较小地耐受直流偏置电流,在循环的前半部分和本季度达到峰值时发生变形。此外,随着DC偏置的增加,空载损失和总谐波失真(THD)显着增加。 DC偏压负载的RSM特性的结果可以在实际操作中保护和减少UHV变压器的直流偏置效应来提供很大的服务。

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