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Inrush Current Reduction Strategy for a Three-Phase Dy Transformer Based on Pre-Magnetization of the Columns and Controlled Switching

  • Marian Łukaniszyn
  • , Bernard Baron
  • , Joanna Kolańska-Płuska
  • , Łukasz Majka
  • Opole University of Technology

Research output: Contribution to journalArticlepeer-review

9 Citations (Scopus)

Abstract

The methodology and test results of a three-phase three-column transformer with a Dy connection group are presented in this paper. This study covers the dynamics of events that took place in the first period of the transient state caused by the energizing of the transformer under no-load conditions. The origin of inrush currents was analyzed. The influence of factors accompanying the switch-on and the impact of the model parameters on the distribution and maximum values of these currents was studied. In particular, the computational methods of taking into account the influence of residual magnetism in different columns of the transformer core, as well as the impact of the time instant determined in the voltage waveform at which the indicated voltage is supplied to a given transformer winding, were examined. The study was carried out using a nonlinear model constructed on the basis of classical modeling, in which hysteresis is not taken into account. Such a formulated model requires simplification, which is discussed in this paper. The model is described using a system of stiff nonlinear ordinary differential equations. In order to solve the stiff differential state equations set for the transient states of a three-phase transformer in a no-load condition, a Runge–Kutta method, namely the Radau IIA method, with ninth-order quadrature formulas was applied. All calculations were carried out using the authors’ own software, written in C#. A ready-made strategy for energizing a three-column three-phase transformer with a suitable pre-magnetization of its columns is given.

Original languageEnglish
Article number5238
JournalEnergies
Volume16
Issue number13
DOIs
Publication statusPublished - Jul 2023

Keywords

  • Runge–Kutta implicit methods
  • circuit model of a three-phase transformer
  • inrush currents of the unloaded transformer
  • pre-magnetization
  • stiff nonlinear ordinary differential equations
  • the time instant specified in the waveform of the switched supply voltage
  • transient state

ASJC Scopus subject areas

  • Renewable Energy, Sustainability and the Environment
  • Fuel Technology
  • Engineering (miscellaneous)
  • Energy Engineering and Power Technology
  • Energy (miscellaneous)
  • Control and Optimization
  • Electrical and Electronic Engineering

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