会议专题

Research on magnetic crosstalk characteristics of straight light path type optical current transformer

  The straight light path type optical current transformer is exposed to the magnetic field interference in the three-phase power system.In this paper the mathematical model of magnetic interference rate (MIR) of straight light path type optical current transformer was established,and the MIR characters of straight light path type optical current transformer were researched.The research showed that the structural parameters of straight light path type optical current transformer are the key factors influencing the MFI of straight light path type optical current transformer,and the study discovered that the MIR of straight light path type optical current transformer decreases with the decreasing length of the magneto-optic crystal or distance between the magneto-optical and the current to be measured.Basing on that,an optimization method was proposed to improve the anti-interference ability of straight light path type optical current transformer by reducing the distance between the magneto-optic crystal and the current to be measured.The experimental results showed that the error of straight light path type optical current transformer induced by magnetic crosstalk decreased by at least one order of magnitude when the distance between the magneto-optical and the current to be measured reduced from 20cm to 4.4cm.The experimental results are consistent with the theoretical analysis conclusions,and that demonstrates the correctness and practicality of the proposed optimization method.

Faraday effect optical current sensor magnetic interference rate magnetic crosstalk

Li Shenwang Guo Zhizhong Zhang Guoqing Yu Wenbin Shen Yan Liu Zhiqing Yin Dong Wang Guopeng

Department of Electrical Engineering Harbin Institute of Technology, HIT Harbin, China State Grid Shandong Electric Power Company Jinan, China

国际会议

2016 Sixth International Conference on Instrumentation and Measurement,Computer,Communication and Control (IMCCC2016)(第六届仪器测量、计算机通信与控制国际会议)

哈尔滨

英文

11-14

2016-07-21(万方平台首次上网日期,不代表论文的发表时间)