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Simulations of Transformer Inrush Current by Using BDF-Based Numerical Methods

机译:基于BDF的数值方法对变压器励磁涌流的仿真

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摘要

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.
机译:本文介绍了三种用于浪涌电流仿真的变压器建模方法。所开发的变压器模型不依赖于积分步骤,因此可以将它们以刚性微分方程系统的状态空间形式合并。仿真期间的特征值传播会导致方程系统非常僵化。通过使用A和L稳定的数值微分公式(NDF2)方法求解状态空间方程组。这种方法可以抑制瞬态仿真中的虚假数值振荡。对所有三个建议的模型都进行了实测和模拟的涌入电流与稳态变压器电流之间的比较。通过结合使用现有的梯形和建议的NDF2方法,可以将已实现的非线性电感器,非线性电阻器和磁滞模型合并到EMTP型程序中。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第10期|215647.1-215647.10|共10页
  • 作者单位

    Faculty of Electrical Engineering, Tuzla University, 75000 Tuzla, Bosnia and Herzegovina;

    Faculty of Electrical Engineering and Computing, Zagreb University, 11000 Zagreb, Croatia;

    Faculty of Electrical Engineering and Computer Science, Maribor University, 2000 Maribor, Slovenia;

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