利用傅立叶变换检测变压器电压电流畸变与绕组损坏的关系

I. Reva, O. Bialobrzheskyi, A. Lomonos
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引用次数: 0

摘要

随着供电系统(智能电网)的智能化,变电站电力变压器在运行过程中的损坏检测是一项紧迫的任务。这样就可以预测变压器等效电路的电气参数的变化。同时,研究变压器模式参数与电、磁参数变化之间的关系的问题也没有找到一个明确的解决方案。这项工作的目的是确定模式的电气参数变化的性质与匝绕组之间的关系。其中一个相的变压器绕组的电路方程和电磁天平的方程都被使用。给出了部分初级绕组或次级绕组短路情况下的计算公式。对一台绕组明显损坏的实验室变压器进行了实验研究。利用傅里叶变换对变压器在空载和有载模式下的相电流和电压进行了分析。将得到的时间图和谱图与解析关系进行比较,发现属于一次绕组或二次绕组的损伤影响磁路的饱和程度。所得结果可用于智能电网结构中变电站电力变压器监测系统的实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of Fourier Transform to Detect the Relationship Between Voltage and Current Distortion of the Transformer with Damage to the Winding
Detection damage to power transformers of substations during their operation is an urgent task, given the intellectualization of the power supply system (SmartGrid). This allows predicting changes in the electrical parameters of the equivalent circuit of the transformer. At the same time, the problems of studying the connection between the parameters of the transformer mode with a change in its electrical or magnetic parameters have not found an unambiguous solution. The aim of the work is to determine the relationship between the nature of the change in the electrical parameters of the mode with turn windings. The equations of the electric circuit of the transformer windings for one of the phases, as well as the equations of the electromagnetic balance are used. The equations are presented for the case of short circuits of a part of the primary or secondary windings. Experimental studies of a laboratory transformer with obvious damage to the windings have been carried out. Using the Fourier transform, the analysis of the current and voltage of the phases of the transformer in no-load and load mode is carried out. As a result of comparing the obtained time and spectral diagrams with the obtained analytical relationships, it was found that the damage belongs to the primary or secondary winding affects the degree of saturation of the magnetic circuit. The obtained results can be used in the implementation of monitoring systems for power transformers of substations in the SmartGrid structure.
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