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Design and Error Analysis of Geomagnetic Measurement Circuit Based on Triaxial Magneto-resistive Sensor

机译:基于三轴磁阻传感器的地磁测量电路的设计与误差分析

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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.
机译:地磁感应强度受到基于惠斯通电桥的磁阻传感器的小尺寸和简单性感应。但是,该字段的输出信号很小,并且需要高放大率。为了解决这个问题,设计了基于三轴磁阻传感器的Y'形反馈结构的电路,以获得高放大率。然后呈现硬件电路的误差分析。分析结果表明,随着地磁场强度的增加,引起了较大的误差。最后,完成了静态取样,通过该静态采样测量,测量地质磁场为52848NT,以及通过高精度三轴磁通仪FVM400获得的53520.24 NT。它们之间的差异仅为1.26%。结果表明,电路实现了测量要求,结构简单,稳定性好,精度高。

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