期刊文献+

基于异或运算相敏整流的数字磁通门设计 被引量:3

Design of Digital Fluxgate Sensor Based on Phase-Sensitive of XOR Operation
下载PDF
导出
摘要 针对模拟电路磁通门温度特性差,数字电路磁通门占用接口多且反应慢的难题,提出了一种基于异或运算相敏整流电路的数字式闭环磁通门传感器。该异或运算电路是将高速AD采样得到的二次谐波信号与参考方波信号进行异或逻辑运算后经高速DA完成了数字相敏整流功能。采用基于异或运算相敏整流电路的磁通门系统既改善了温度特性,同时也节约了数字接口,减少了数字处理器的运算负担。通过实验测试,结果显示:系统测量范围为±62 900 n T,线性度为2.8×10-4,分辨力约为2 n T,磁通门反馈回路的-3 d B带宽约为240 Hz。 In order to solve the poor temperature characteristic of the fluxgate based on analog circuit and the problem that the fluxgate of digital circuit has many interfaces and slow response. A digital closed loop fluxgate sensor based on phase-sensitive circuit of XOR operation has been proposed. The phase-sensitive circuit of XOR operation has completed the function of the digital phase-sensitive through which digital signal sampled the two harmonics by the high-speed AD and the square wave signals has been processed through the XOR gate,and then transmitted them directly to the high-speed DA. The fluxgate system of phase-sensitive circuit based on XOR operation not only improves the temperature characteristics,but also saves the digital interface and reduces the computational burden of the digital processor. Experiments show that the measurement range of the system is 62 900 n T,the linearity is 2.8×10^(-4),the resolution is about 2 n T,and the-3 d B bandwidth of the fluxgate feedback loop is about 240 Hz.
作者 崔智军 CUI Zhijun(College of Electronics and Information Engineering,An kang University,Ankang Shaanxi 725000,China;College of Electronics and Information Northwestern Polytechnical University,Xi’ an 710129,China)
出处 《传感技术学报》 CAS CSCD 北大核心 2018年第5期733-737,758,共6页 Chinese Journal of Sensors and Actuators
基金 国家自然科学基金项目(61504107) 陕西省教育厅科学研究计划项目(17JK0018) 国家级大学生创新训练项目(G201711397005) 安康学院校级青年基金项目(2017AYQN08) 安康市科学技术研究发展计划项目(2017AK01-09)
关键词 数字磁通门 相敏整流 异或运算 线性度 分辨力 digital fluxgate sensor phase-sensitive xor operation linearity resolutio
  • 相关文献

参考文献5

二级参考文献42

  • 1张莹,刘诗斌,刘子懿.基于单片机的数字磁通门传感器[J].传感器与微系统,2006,25(7):46-49. 被引量:11
  • 2Ripka P, et al. , Magnetic Sensors and Magnetometers[M], Artech House, Boston, 2001.
  • 3Ptatil A, Vopalensky M, Ripka P, Kaspar P, Improvement of AMR Magnetometer Precision, Eurosensors XVI, Prague, Book of Abstracts Part 2,2002 : 339-340.
  • 4Brian, et al. ,The Magnetometer Instrument on MESSENGER [J]. Space Sci Rev (2007) 131:417-450.
  • 5H. U Austert. Concept and First Results of a Digital Fluxgate Magnetometer [ J]. Measurement Science and Technology, 1995. (6) :477-481.
  • 6Glassmeier, K-H, et al. , The Fluxgate Magnetometer of the BepiColombo Mercury Planetary Orbiter[J]. Planet Space Sci. (2008), doi.. 10. 1016/j. pss. 2008.06. 018.
  • 7Magnes W, et al. , A Sigma Delta Fluxgate Magnetometer for Space Applications [ J]. Meas. Sci. Technol. 14 (2003) 1003-1012.
  • 8H O'Brien, et al. , A Radiation Tolerant Digital Fluxgate Magnetometer[J]. Meas. Sci. Technol. 18 (2007) 3645-3650.
  • 9Primdahl, et al. , Digital Detection of the Flux-Gate Sensor Output Signal [ J ]. Meas. Sci. Technoi. 5 (1994) 359- 362. Printed in the UK.
  • 10Hine A. Magnetic Compasses and Magnetometers[M]. Adam Hilger LTD, London: 1968. 270.

共引文献29

同被引文献32

引证文献3

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部