Design of a Fluxgate Weak Current Sensor with Anti-Low Frequency Interference Ability

Author:

Tan Xiangyu,Li Wenyun,Qian Guochao,Ao Gang,Xu Xiaowei,Wei Ran,Ke Yi,Zhang Wenbin

Abstract

According to the requirements of weak current measurement in power grid, a weak current sensor with anti-low frequency interference ability is developed. The sensor adopts the principle of fluxgate detection and adds a magnetic ring on the original basis. The structure of the magnetic ring is simulated using comsol to further improve detection sensitivity. In order to solve the problem that the electromagnetic current sensor is vulnerable to the interference of geomagnetic field and power frequency magnetic field in weak current measurement, a magnetic shielding method with low cost is selected, and the shielding shell structure is designed using a finite element analysis method. The experimental results show that the minimum measurable current is 1 mA, the measurement range is 1 mA–1 A, and the bandwidth is DC-16 kHz. The designed magnetic shielding shell can effectively reduce 97.3% of the DC magnetic field interference and 95.7% of the power frequency magnetic field interference. The sensor can realize accurate measurement of weak current in power grid.

Funder

Yunnan Academy of Science and Technology

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference22 articles.

1. Research on Anti-interference Technology of Complex Electromagnetic Environment of TMR Current Sensor;Instrum. Tech. Sens.,2020

2. Zhou, L.Y. (2019). Study on Current Sensing Technology Based on Tunnel Magnetoresistance Effect, Chongqing University.

3. Wang, L., Zhang, W., Tan, X., Chen, W., Liang, S., and Suo, C. (2020). Research and Experiments on an External Miniaturized VFTO Measurement System. Sensors, 20.

4. Wang, Y., Zhou, G., Zeng, C., Zhang, W., Ren, Y., Ke, Y., Chu, H., and Suo, C. (2021). Research on On-Line Detection Method of Transformer Winding Deformation Based on VFTO. Sensors, 21.

5. Nonintrusive current sensor for the two-wire power cords;IEEE Trans. Magn.,2015

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