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Analysis of the Functional Mechanism of the Interference Magnetic Field on Straight Light Path Type Optical Current Transformers

机译:直线光路型光电流互感器干扰磁场的作用机理分析

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The straight light path type OCTs feature simple optical paths and high reliability, but are vulnerable to interference from the external magnetic field. In this paper, the method of Jones matrix is adopted to establish the sensing models of the straight light path type OCTs for analyzing their sensing characteristics and thus revealing the functional mechanism of the interference magnetic field. It is found from the analysis that the interference magnetic field works either by changing the sensing coefficient of the straight light path type OCT or by changing the target magnetic field, moreover, the analysis also shows that the impact of the interference magnetic field on the sensing coefficient can be neglected, but the impact is significantly seen on the target magnetic field, which thus can significantly reduce the measurement accuracy of the straight light path type OCTs. The simulation results show that, under the action of 1000A interference current, the measurement error of the straight light path type OCTs is 2.91%, which is far beyond the accuracy level limit of 0.2, so the simulation results coincide with the theoretical analysis. The research in this paper can lay the theoretical basis for analyzing and optimizing the magnetic resistance characteristics of the straight light path type OCTs.
机译:直光路型OCT具有简单的光路和高可靠性,但容易受到外部磁场的干扰。本文采用琼斯矩阵的方法建立了直光路型OCT的传感模型,分析了它们的传感特性,从而揭示了干扰磁场的作用机理。从分析中发现,干扰磁场通过改变直光路型OCT的感测系数或通过改变目标磁场而起作用,此外,分析还表明,干扰磁场对感测的影响可以忽略该系数,但是对目标磁场的影响非常明显,因此会大大降低直光路型OCT的测量精度。仿真结果表明,在1000A干扰电流的作用下,直光路型OCT的测量误差为2.91%,远远超过了0.2的精度水平极限,因此仿真结果与理论分析相吻合。本文的研究可为分析和优化直线光路型OCT的磁阻特性奠定理论基础。

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