Title :
Design and Error Analysis of Geomagnetic Measurement Circuit Based on Triaxial Magneto-Resistive Sensor
Author :
Li, Yonghui ; Zhang, Xiaoming ; Chen, Guobin ; Cui, Xing ; Liu, Jun
Abstract :
Geomagnetic induction intensity is popularly sensed by those small size and simplicity of wheatstone bridge based magneto-resistive sensors. However, the output signal is small for the field is weak, and high magnification is needed. To solve this problem, circuit with ´Y´-shaped feedback structure based on triaxial magneto-resistive sensor was designed to obtain high magnification. Error analysis of the hardware circuit was then presented. Analysis results showed that larger errors were brought about with increasing geomagnetic field intensity. Finally, static sampling was finished, through which the geomagnetic field was measured to be 52848 nT, as well as 53520.24 nT gained by high-precision triaxial fluxgate magnetometer FVM400. The difference between them two was only 1.26%. The results showed that the circuit had achieved the measurement requirements, with simple structure, good stability, and high accuracy.
Keywords :
error analysis; geomagnetism; magnetometers; magnetoresistive devices; FVM400; Y-shaped feedback structure; error analysis; geomagnetic field intensity; geomagnetic induction intensity; geomagnetic measurement circuit; hardware circuit; high-precision triaxial fluxgate magnetometer; static sampling; triaxial magneto-resistive sensor; wheatstone bridge; Bridge circuits; Magnetic circuits; Magnetic field measurement; Magnetic fields; Magnetometers; Measurement uncertainty; Operational amplifiers;
Conference_Titel :
Control, Automation and Systems Engineering (CASE), 2011 International Conference on
Conference_Location :
Singapore
Print_ISBN :
978-1-4577-0859-6
DOI :
10.1109/ICCASE.2011.5997769