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Dynamic Modeling of Three-Phase Asymmetric Power Transformers With Magnetic Hysteresis: No-Load and Inrush Conditions

机译:带有磁滞的三相非对称电力变压器的动态建模:空载和浪涌条件

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摘要

A new dynamic model of a three-phase three-leg transformer for steady-state and transient operating conditions is proposed in this paper. With very few exceptions, the existing models oversimplify the magnetic interactions in multileg core topologies and employ single-value nonlinear functions for modeling core nonlinearities. Unfortunately, this does not provide sufficient accuracy for a wide range of dynamic disturbances such as dc bias, ferroresonance, and inrush. For this purpose, a new time-domain model based on magnetic-circuit theory is developed to include dynamic-hysteresis behavior (major and minor loops) in asymmetric three-leg core topologies. Furthermore, a new analysis is performed to study the impacts of hysteresis on no-load and transient inrush current behavior in three-phase transformers. Simulation results have been successfully compared with measurements to verify the accuracy of the proposed model.
机译:提出了三相三臂变压器稳态和瞬态工况的动态模型。除了极少数例外,现有模型在多分支核心拓扑中过分简化了磁相互作用,并采用单值非线性函数来建模核心非线性。不幸的是,这对于诸如直流偏置,铁磁谐振和浪涌之类的各种动态干扰都无法提供足够的精度。为此,开发了一种基于磁路理论的新时域模型,以在非对称三脚铁心拓扑中包括动态磁滞行为(主要和次要环路)。此外,进行了一项新的分析,以研究磁滞现象对三相变压器的空载和瞬态浪涌电流行为的影响。仿真结果已成功与测量结果进行比较,以验证所提出模型的准确性。

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