您好,欢迎来到中国测试科技资讯平台!

首页> 《中国测试》期刊 >本期导读>磁力线集聚器磁场矢量选择特性研究

磁力线集聚器磁场矢量选择特性研究

2974    2017-10-11

免费

全文售价

作者:张晓明1, 樊之琼1,2, 吕忆玲1, 王庆宾1

作者单位:1. 中北大学 电子测试技术国家重点实验室, 山西 太原 030051;
2. 中北大学 仪器科学与动态测试教育部重点实验室, 山西 太原 030051


关键词:磁场矢量;磁力线集聚器;放大特性;仿真分析


摘要:

针对现有微型传感器弱磁场探测精度不高的问题,通过外置磁力线聚集器,探究该集聚器对磁场矢量的选择特性,来提高磁传感器的灵敏度。在磁力线集聚器上施加不同方向的磁场,利用ANSYS有限元软件仿真进行数值模拟,分析集聚器空气间隙磁场放大的三分量,研究该磁力线集聚器对磁场的矢量选择特性,并针对不同平面矢量磁场,分析磁力线集聚器轴向磁场强度的放大倍数,使用高磁导率材料制作磁力线聚集器。实验表明:将矢量磁场施加在不同平面,磁力线集聚器矢量选择性较好,放大特性较好,在弱磁场环境下,磁测精度有所提高。


Study on the characteristics of magnetic-field selective vector of magnetic force concentrator

ZHANG Xiaoming1, FAN Zhiqiong1,2, LÜ Yiling1, WANG Qingbin1

1. National key Laboratory for Electronic Measurement Technology, North University of China, Taiyuan 030051, China;
2. Key Laboratory of Instrumentation Science & Dynamic Measurement of Ministry of Education, North University of China, Taiyuan 030051, China

Abstract: Aiming at the problem that weak magnetic field detection accuracy of existing microsensor is low, sensitivity of magnetic sensor can be improved based on the selectivity characteristics of the concentrator to magnetic-field vector via external magnetic force concentrator. By applying magnetic field in different directions on magnetic force concentrator and carrying out numerical simulation via ANSYS finite element software, amplified three-vector values of concentrator air gap magnetic field were analysed and vector selectivity of magnetic force concentrator to magnetic field was researched. Besides, according to vector magnetic field with different planes, amplification times of axial magnetic field strength of magnetic force concentrator was also analysed and high-permeability materials were used to fabricate magnetic force concentrator. Results show that the magnetic force concentrator has good vector selectivity and amplification characteristics by applying magnetic field on different planes, and it can be used to improve the magnetic measurement accuracy under weak magnetic field.

Keywords: magnetic field vector;magnetic force concentrator;amplification characteristics;simulation analysis

2017, 43(9): 148-152  收稿日期: 2017-02-15;收到修改稿日期: 2017-04-13

基金项目: 国家自然科学基金项目(51375463)

作者简介: 张晓明(1976-),男,山西运城市人,副教授,博士,研究方向为地磁导航。

参考文献

[1] 郭鑫,唐晓莉,张怀武,等. 基于磁阻效应的地磁场探测研究[J]. 电子元件与材料,2014(11):70-72.
[2] RUDNEV V I. An objective assessment of magnetic flux concentrators in induction heating[J]. Heat Treating Progress,2004,4(6):19-23.
[3] DRLJAČA P M, VINCENT F, POPOVIČ R S, et al. Design of planar magnetic concentrators for high sensitivity hall devices[J]. Sensors & Actuators A Physical,2002,97(1):10-14.
[4] BRUGGER S, PAUL O. Geometric optimization and mi- crostructuring of magnetic concentrators of a resonant magnetic sensor[C]//Solid-State Sensors, Actuators and Microsystems Conference. IEEE,2007.
[5] 王晓飞,韩焱,李凯. 基于改进巨磁电阻芯片的三维地磁传感器设计[J]. 磁性材料及器件,2014(4):28-30.
[6] YIN X, REGO P J D, LIOU S H. Tuning magnetic nanostructures and flux concentrators for magnetoresistive sensors[C]//SPIE Nanoscience Engineering,2015.
[7] 吕忆玲,张晓明,陈国彬,等. 磁通集聚结构磁场放大特性研究[J]. 科学技术与工程,2015,35(15):6-10.
[8] DEETER M N. High sensitivity fiber-optic magnetic field sensors based on iron garnets[J]. IEEE Transactions on Instrumentation & Measurement,1994,44(2):464-467.
[9] TRINDADE I G, OLIVEIRA J, FERMENTO R, et al. Soft thin films for flux concentrators[J]. IEEE Transactions on Magnetics,2009,45(1):168-171.
[10] SUN X, JIANG L, PONG P W T. Magnetic flux concentration at micrometer scale[J]. Microelectronic Engineering,2013(111):77-81.
[11] SCHNEIDER M, CASTAGNETTI R, ALLEN M G, et al. Integrated flux concentrator improves CMOS magnetotransistors[C]//IEEE on Micro Electro Mechanical Systems. IEEE,1995.
[12] CARUSO M J, SMITH C H, BRATLAND T, et al. A new perspective on magnetic field sensing[J]. Sensors,1998(15):1-21.