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Transformer Inrush Current Mitigation Using Controlled Switching and Magnetic Flux Shunts

机译:使用受控开关和磁通并联来减轻变压器浪涌电流

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The inrush current is a transient current that results from a sudden change in the exciting voltage across a transformer’s windings. It may cause inadvertent operation of the protective relay system and necessitate strengthening of the transformer’s mechanical structure. Many methods were reported in the literatures for reduction and mitigation of transformer inrush currents. This paper represents a study of techniques that have been proposed for transformer inrush current mitigation. A new, simple and low cost technique to reduce inrush currents caused by transformer energization is presented here. In this method, a controlled switching approach with a grounding resistor connected to transformer neutral point and a magnetic flux shunt is used. By energizing each phase of the transformer in sequence, the neutral resistor behaves as a series-inserted resistor and thereby significantly reduces the inrush currents. The dimensions of the magnetic flux shunts are chosen such that the inrush current amplitude is further reduced. The proposed method has been tested by computer simulation using 2-D FEM (two-dimensional finite element method) by Maxwell software. The obtained results show that the proposed method is efficient in reduction of transformer inrush current and is much less expensive since there is only one resistor involved and the resistor carries only a small neutral current in steady-state.
机译:浪涌电流是一种瞬态电流,它是由变压器绕组两端的励磁电压突然变化引起的。这可能会导致保护继电器系统的意外操作,并有必要加强变压器的机械结构。文献中报道了许多减少和减轻变压器浪涌电流的方法。本文代表对变压器浪涌电流缓解技术的研究。本文提出了一种新的,简单且低成本的技术,以减少由变压器通电引起的浪涌电流。在这种方法中,使用了一种将接地电阻连接到变压器中性点并使用磁通旁路的受控开关方法。通过依次给变压器的各相通电,中性电阻器就起到了串联插入的电阻器的作用,从而显着降低了浪涌电流。选择磁通旁路的尺寸,以便进一步减小浪涌电流幅度。通过Maxwell软件使用2-FEM(二维有限元方法)的计算机仿真对提出的方法进行了测试。所得结果表明,所提出的方法在减少变压器浪涌电流方面是有效的,并且由于仅涉及一个电阻器并且在稳态时该电阻器仅携带小的中性电流,因此其成本要低得多。

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