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Investigation of Transformer-Based Solutions for the Reduction of Inrush and Phase-Hop Currents

机译:基于变压器的减少浪涌和相跳电流的解决方案的研究

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A comprehensive literature review shows that transformer-based solutions are superior for the mitigation of inrush currents than external (to the transformer) solutions. The use of air gaps and low-permeability (iron) materials are known techniques for this purpose. This paper investigates the effectiveness of these approaches for reducing inrush and phase-hop currents. Studies are carried out on toroidal transformers, due to their broad application in power electronics devices. Contrary to common belief, this paper demonstrates that air gaps do not reduce the inrush currents when a transformer is fully demagnetized. However, inrush currents can be mitigated by the use of low-permeability iron materials. It is also demonstrated that air-gaps significantly reduce inrush currents when transformers have residual flux, e.g., for phase-hop conditions. Analytical expressions are derived to compute the mitigation factor for a specific gap length. The results and formulae presented in this paper are verified with laboratory experiments, transient simulations with validated circuit models, and 2-D finite element simulations.
机译:全面的文献综述表明,基于变压器的解决方案在减轻涌入电流方面优于外部(针对变压器)解决方案。气隙和低渗透性(铁)材料的使用是为此目的的已知技术。本文研究了减少浪涌电流和相跳电流的这些方法的有效性。由于环形变压器在电力电子设备中的广泛应用,因此对其进行了研究。与通常的看法相反,本文证明了当变压器完全消磁时,气隙不会减少浪涌电流。但是,通过使用低磁导率的铁材料可以减轻涌入电流。还证明了,当变压器具有剩余磁通量时,例如在相跳条件下,气隙会显着减小浪涌电流。导出分析表达式以计算特定间隙长度的缓解因子。本文提供的结果和公式已通过实验室实验,经过验证的电路模型进行的瞬态仿真以及二维有限元仿真进行了验证。

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