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Transient fault responses of a synchronous generator with a coupled circuit model

机译:具有耦合电路模型的同步发电机的瞬态故障响应

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Harmonic content, magnetic saturation and simulation time can be an issue for the analysis of steady-state and transient behavior of electrical machines. Carrying the simulations with a finite-elements software results in long simulation time. To reduce the simulation time, this paper proposes a fast modelling method based on a coupled circuit whose magnetic couplings are identified with magnetostatic 2D FE simulations. This method provides an accurate spatial modelling. The magnetic couplings for each discrete rotor position are stored in a table. We show that a simple interpolation method can be used for the inductance estimation at any rotor position with a variable-step solver. The impact of the angular discretization on the waveforms is analyzed. We propose also a simple method to consider the saturation in the coupled-circuit. The performance of this model is analyzed for the steady-state and transient current responses of a synchronous generator with high field current.
机译:谐波含量,磁饱和度和仿真时间可能是分析电机的稳态和瞬态行为的问题。使用有限元软件进行仿真会导致较长的仿真时间。为了减少仿真时间,本文提出了一种基于耦合电路的快速建模方法,该电路的磁耦合通过静磁二维有限元仿真来识别。此方法提供了准确的空间建模。表格中存储了每个离散转子位置的磁耦合。我们展示了一种简单的插值方法可用于带有可变步长求解器的任何转子位置处的电感估计。分析了角度离散化对波形的影响。我们还提出了一种简单的方法来考虑耦合电路中的饱和度。针对具有高励磁电流的同步发电机的稳态和瞬态电流响应,分析了该模型的性能。

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