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Modeling of grain-oriented Si-steel and amorphous alloy iron core under ferroresonance using Jiles–Atherton hysteresis method

机译:使用JileS-Atherton滞后法在Ferroreonance下谷物导向Si-钢和非晶合金铁芯的建模

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Amorphous alloy is increasingly widely used in the iron core of power transformer due to its excellent low loss performance. However, its potential harm to the power system is not fully studied during the electromagnetic transients of the transformer. This study develops a simulation model to analyze the effect of transformer iron core materials on ferroresonance. The model is based on the transformer π equivalent circuit. The flux linkage–current ( ψ–i ) Jiles–Atherton reactor is developed in an Electromagnetic Transients Program-Alternative Transients Program and is used to represent the magnetizing branches of the transformer model. Two ferroresonance cases are studied to compare the performance of grain-oriented Si-steel and amorphous alloy cores. The ferroresonance overvoltage and overcurrent are discussed under different system parameters. Results show that amorphous alloy transformer generates higher voltage and current than those of grain-oriented Si-steel transformer and significantly harms the power system safety.
机译:由于其出色的低损耗性能,非晶合金越来越广泛地广泛应用于电力变压器的铁芯。然而,在变压器的电磁瞬变期间没有完全研究对电力系统的潜在伤害。本研究开发了一种仿真模型,用于分析变压器铁芯材料对成分谐腾的影响。该模型基于变压器π等效电路。磁通连杆电流(ψ-i)jiles-atherton反应器是在电磁瞬变程序替代瞬态程序中开发的,并且用于表示变压器模型的磁化分支。研究了两种成分术例,以比较谷物导向的Si-钢和非晶合金核心的性能。在不同的系统参数下讨论了Ferroreonance过电压和过流。结果表明,非晶合金变压器比谷物为导向的Si-钢变压器产生更高的电压和电流,并显着损害了电力系统的安全性。

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