三相变压器空转时谐波功率分配的研究

I. Reva, O. Bialobrzheskyi, Oksana Usatiuk
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引用次数: 2

摘要

电力变压器是电力系统的重要组成部分。智能电网结构下电网系统的发展对信息化提出了更高的要求。在这样的条件下,变压器成为电能监测系统和电力状态的重要组成部分。对于运行时间较长、有时超出监管范围的变压器,这一过程更为重要,这是典型的国家电网。在大多数情况下,现有的研究都是基于对变压器绕组相电流和电压的频谱组成分析。提出了在考虑电流和电压谐波的情况下,确定三相变压器空载状态有功和无功分量的方法,作为有功部分状态的指示器。在实验设备上对变压器空转模式进行了实验研究。提出了三相变压器空转状态下能量特性实验研究的主要步骤。为此目的是采用傅立叶变换,监测各绕组的有功和无功指标是由电流和电压的基波谐波和所有测量谐波决定的。值得注意的是,在其中一个相位中,当星三角洲连接时,提供了高次谐波发电。在相同的情况下,电流谐波相对于电压谐波大大增强。研究结果可作为智能电网结构信息支持的组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of distribution a harmonic power in three phase transformer at idling mode
Power transformers are an integral part of the power system. The development of the electric grid system in the structure of Smart Grid requires more informatization. Under such conditions, become important components energy monitoring systems and the status of power transformers. This process is even more important in the case of transformers that have been in operation for a long time, and sometimes outside regulatory terms, which is typical of state networks. In most cases, the existing studies is based on the spectral composition analysis a transformer windings phase current and voltage. The procedure of determining the active and reactive power components of a three-phase transformer in idle mode, as indicators of the state of the active parts, taking into account the harmonics of current and voltage, is proposed. An experimental study of the transformer idling mode was carried out on the laboratory equipment. The primary sequence of the experimental study energy performance a three-phase transformer in idle mode is developed. For this purpose is use Fourier transform, and the active and reactive power index of windings are monitoring is determined by the fundamental harmonics of current and voltage and all measurements harmonics. It is noted in one of the phases that the higher harmonics power generation is provided when the star-delta is connected. In the same case, the current harmonics are greatly enhanced relative to the voltage harmonics. The study results can be used as components of information support for the Smart Grid structure.
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