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A High-Precision Temperature Compensation Method for TMR Weak Current Sensors Based on FPGA.

Authors :
Wu, Jie
Zhou, Ke
Jin, Qingren
Lu, Baihua
Jin, Zhenhu
Chen, Jiamin
Source :
Micromachines; Dec2024, Vol. 15 Issue 12, p1407, 17p
Publication Year :
2024

Abstract

Tunnel magnetoresistance (TMR) sensors, known for their high sensitivity, efficiency, and compact size, are ideal for detecting weak currents, particularly leakage currents in smart grids. However, temperature variations can negatively impact their accuracy. This work investigates the effects of temperature variations on measurement accuracy. We analyzed the operating principles and temperature characteristics of TMR sensors and proposed a high-precision, software-based temperature compensation method using cubic spline interpolation combined with polynomial regression and zero-point self-calibration. Additionally, a field-programmable gate array (FPGA)-based temperature compensation circuit was designed and implemented. An experimental platform was established to comprehensively evaluate the sensor's performance under various temperature conditions. Experimental results demonstrate that this method significantly enhances the sensor's temperature stability, reduces the sensitivity temperature drift coefficient, and improves zero-point drift stability, outperforming other compensation methods. After compensation, the sensor's measurement accuracy in complex temperature environments is substantially improved, enabling effective weak current detection in smart grids across diverse environments. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
2072666X
Volume :
15
Issue :
12
Database :
Complementary Index
Journal :
Micromachines
Publication Type :
Academic Journal
Accession number :
181912749
Full Text :
https://doi.org/10.3390/mi15121407