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Influence of magnetic permeability in phase error of current transformers with nanocrystalline alloys cores

机译:纳米晶合金芯电流变压器相位误差磁导率的影响

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In this paper are presented an analytical and experimental study about the influence of magnetic permeability in phase error of current transformers (CT) with nanocrystalline alloy core. The interest in nanocrystalline alloys in CT cores is based on their magnetic characteristics, e.g., high relative magnetic permeability, low coercive force, and narrow hysteresis loop. To check the influence of the magnetic permeability in the phase error, some experiments were performed such that the only difference in the experimental setup was the ferromagnetic core of the current transformer. In these experiments were investigated four nanocrystalline alloys, with different composition, and a grain-oriented FeSi alloy. From the experimental results obtained, the magnetic characterization of the alloys under test confirmed the premise that the nanocrystalline alloys have superior values of magnetic permeability, lower coercive force and minor hysteresis loops. In tests with CT can be observed that those with nanocrystalline alloy toroidal core presents lower values of phase error in comparison with the CT with FeSi toroidal core, under the same rated conditions.
机译:本文介绍了纳米晶合金芯的电流互感器(CT)相误差在相误差中的影响的分析和实验研究。 CT核中纳米晶合金的兴趣基于它们的磁特性,例如高相对磁导率,低矫顽力和窄滞后回路。为了检查相位误差在相位误差中的磁导率的影响,进行了一些实验,使得实验装置的唯一差异是电流变压器的铁磁芯。在这些实验中,研究了四种纳米晶合金,具有不同的组成和晶粒化的FeSi合金。从获得的实验结果中,被测合金的磁性表征证实了纳米晶合金具有优异的磁导率,较低矫顽力和次要滞后环的前提。在CT的测试中,可以观察到具有纳米晶体合金环形核心的那些与具有FeSi环形核心的CT相比,相对于CT的相位误差的值较低,在相同的额定条件下。

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