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Analysis of magnetic fields due to three-phase bus bar currents for the design of an optical current transformer

机译:光学电流互感器设计中由于三相母线电流引起的磁场分析

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The dc and ac magnetic fields due to transmission currents flowing through bus bars arranged side-by-side are analyzed to design the three-phase optical current transformer. The structure of optical current transformer with a double core for magnetic shielding is proposed based on the analysis of the interference effect of magnetic fields originated in the three-phase transmission currents and those of the eddy current fields induced by the component of three-phase ac fluxes perpendicular to the wide flat face of plate-form bus bar. It is shown that when a value of 100 is assumed as a relative permeability for the inner shield-core, the eddy current fields which hinder the exact measurement of transmission currents can be decreased by less than 1/10 in the space between the inner core and the outer one, where the magneto-optical field sensor is arranged.
机译:分析由于传输电流流过并排布置的母线而产生的直流和交流磁场,从而设计出了三相光电流互感器。在分析三相传输电流产生的磁场与三相交流分量引起的涡流场的干扰效应的基础上,提出了双芯磁屏蔽光电流互感器的结构。垂直于板状母线宽平面的磁通量。结果表明,当将值设为100作为内屏蔽芯的相对磁导率时,在内芯之间的空间中,妨碍精确测量传输电流的涡流场可以减小不到1/10。外部,其中布置有磁光传感器。

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