This paper describes three different ways of transformer modeling for inrush current simulations. The developed transformer models are not dependent on an integration step, thus they can be incorporated in a state-space form of stiff differential equation systems. The eigenvalue propagations during simulation time cause very stiff equation systems. The state-space equation systems are solved by using A- and L-stable numerical differentiation formulas (NDF2) method. This method suppresses spurious numerical oscillations in the transient simulations. The comparisons between measured and simulated inrush and steady-state transformer currents are done for all three of the proposed models. The realized nonlinear inductor, nonlinear resistor, and hysteresis model can be incorporated in the EMTP-type programs by using a combination of existing trapezoidal and proposed NDF2 methods. © 2013 Amir Tokić et al.
CITATION STYLE
Tokić, A., Uglešić, I., & Štumberger, G. (2013). Simulations of transformer inrush current by using BDF-based numerical methods. Mathematical Problems in Engineering, 2013. https://doi.org/10.1155/2013/215647
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