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Publishing Language: Chinese

DEVELOPMENT OF A COMPREHENSIVE GEOMAGNETIC MEASUREMENT DEVICE

Yuhao PENGXuanrui ZHANGZhonglong XIONGYan WU( )
School of Mathematics and Physics, China University of Geosciences (Wuhan), Wuhan, Hubei 430074
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Abstract

This device was developed using a project-based learning approach, with the goal of accurately measuring weak geomagnetic fields. We independently designed a measuring instrument, starting with the Gaussian method, to conduct preliminary measurements of the horizontal component of the geomagnetic field. Then, we improved the Gaussian method using a self-made Helmholtz double coil. Finally, based on the communication between a LabVIEW host computer and an Arduino microcontroller, a photoelectric probe detection system was established, enabling efficient and convenient data transmission and processing, as well as higher measurement accuracy. Additionally, we independently designed a Hall-Gauss meter to measure the vertical component of the geomagnetic field using the flipping method. To adapt to the diversity of magnetic field measurement scenarios, we used a STM32 microcontroller to make a self-made AMR Gauss meter and independently wrote hard magnetic correction and tilt compensation algorithms to replace the Kalman filter algorithm. This instrument is characterized by low cost, good interactivity, portability, high accuracy, and can be applied to a wider range of application scenarios.

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Physics and Engineering
Pages 212-220

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Cite this article:
PENG Y, ZHANG X, XIONG Z, et al. DEVELOPMENT OF A COMPREHENSIVE GEOMAGNETIC MEASUREMENT DEVICE. Physics and Engineering, 2025, 35(5): 212-220. https://doi.org/10.26599/PHYS.2025.9320531

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Received: 15 January 2025
Published: 06 February 2026
© 2025 Physics and Engineering.