Simulation of three winding power transformer in Matlab Simulink

A. Zatonskiy, I. Dolgopolov
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Abstract

Background. It is difficult to analyze the energy efficiency of 110 kV electrical networks due to the lack of the possibility to conduct experiments on operating equipment, namely on power transformers. The existing methods of mathematical calculation of electrical networks do not provide a wide opportunity to study the modes of 110 kV networks. Computational experiments to analyze the energy efficiency of equipment operation reduce the risks of equipment damage and injury of maintenance personnel. Also, it allows you to explore the necessary operation modes of a 110 kV electrical network, including power transformers. Materials and methods. The transformer model is developed in the Matlab virtual laboratory using the Simpowersystem toolbox. Results. The passport data of the transformer of the type TDTN-25000/110-U1 are given. The use of a star circuit instead of a T-shaped equivalent circuit is studied since the transformer has three windings. Virtual models are developed to conduct short circuit and open circuit experiments. The calculation of the magnetization curve of the transformer core is carried out. Using a new virtual model of a transformer of the TDTN-25000/110-U1 type, the processes of short circuit and open circuit are studied. The correspondence of the simulation results and the passport data of a real transformer is presented. The oscillograms of the magnetizing current inrush are obtained. They also correspond to the real ones. Conclusions. The model error in comparison with the passport data of a real transformer does not exceed 5 %. The model is recommended to be used to analyze the energy efficiency of 110 kV electrical networks. The promising trend to research the model of a power transformer is to add the voltage regulator under load as the operation condition.
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三绕组电力变压器的Matlab Simulink仿真
背景。由于缺乏在运行设备即电力变压器上进行实验的可能性,因此很难对110 kV电网的能效进行分析。现有的电网数学计算方法没有为研究110千伏电网的模态提供广泛的机会。通过计算实验分析设备运行的能效,降低设备损坏和维护人员受伤的风险。此外,它还允许您探索110千伏电网(包括电力变压器)的必要运行模式。材料和方法。利用Simpowersystem工具箱在Matlab虚拟实验室中开发变压器模型。结果。给出了TDTN-25000/110-U1型变压器的通行证数据。由于变压器有三个绕组,研究了用星形电路代替t形等效电路。开发了虚拟模型进行短路和开路实验。对变压器铁心的磁化曲线进行了计算。利用新型的TDTN-25000/110-U1型变压器虚拟模型,研究了变压器的短路和断路过程。给出了仿真结果与实际变压器通行证数据的一致性。得到了励磁涌流的波形图。它们也对应于实际值。结论。模型与实际变压器护照数据的误差不超过5%。该模型可用于110 kV电网的能效分析。将负载下稳压器作为运行工况,是电力变压器模型研究的发展趋势。
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