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An AMR Sensor-Based Measurement System for Magnetoelectrical Resistivity Tomography

机译:基于AMR传感器的磁电阻层析成像测量系统

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摘要

A magnetoelectrical resistivity measurement system is proposed, which combines measurement of the electric potential and the magnetic field due to a current injection into a sample. Measurement of the electric potential, as well as the injected current, is similar to traditional electrical resistivity tomography (ERT) data acquisition. For the magnetic field measurements, 24 sensor modules have been developed using theee component anisotropic magnetoresistive (AMR) sensors, mounted on a vertically moving scanning torus. The system is designed to operate in a typical laboratory magnetic noise environment without extensive shielding. To compensate for the effects of the Earth's magnetic field, the AMR sensors are operated with a field feedback circuit. Optimal noise reduction is provided by the use of a lock-in frequency of 25 Hz, with sine wave modulation and measurement cycles of 10 s. The resolution of the system is better then 50 pT and the aimed accuracy is 0.1%. The system provides a data set of magnetic fields complimentary to traditional ERT to determine the internal conductivity distribution of cylindrical samples with the dimension of 0.1-m radius and 0.5-m height.
机译:提出了一种磁电电阻率测量系统,该系统将由于电流注入样品而产生的电势和磁场的测量结合在一起。电位以及注入电流的测量类似于传统的电阻率层析成像(ERT)数据采集。对于磁场测量,已经开发了24个传感器模块,这些模块使用安装在垂直移动的扫描圆环上的ee部件各向异性磁阻(AMR)传感器开发。该系统设计为在典型的实验室磁噪声环境中运行,而无需广泛的屏蔽。为了补偿地球磁场的影响,AMR传感器使用场反馈电路进行操作。通过使用25 Hz的锁定频率,正弦波调制和10 s的测量周期,可以实现最佳的降噪效果。系统的分辨率优于50 pT,目标精度为0.1%。该系统提供了与传统ERT互补的磁场数据集,以确定半径为0.1 m且高度为0.5 m的圆柱形样品的内部电导率分布。

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