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Vector Feedback Homogeneity and Inner Layout Influence on Fluxgate Sensor Parameters

机译:矢量反馈同质性和内部布局对通量传感器参数的影响

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摘要

Vector feedback is a concept which can significantly improve linearity and stability of a magnetic field sensor. The feedback coils effectively cancel the measured magnetic field in the inner volume of the triaxial sensor. Thus, in case of fluxgates, it suppresses one possible source of nonlinearity—cross-field sensitivity error. The triaxial sensor axes orthogonality should be primarily defined by the orientation of the feedback coils, while the sensitivities are defined by feedback coil constants. The influence of the homogeneity of the feedback field and the influence of the sensor inner layout on calibration parameters of a vectorially compensated triaxial fluxgate magnetometer are presented.
机译:矢量反馈是一个可以显着改善磁场传感器的线性和稳定性的概念。反馈线圈有效地抵消了三轴传感器内部体积中的测量磁场。因此,在磁通门的情况下,它抑制了一种可能的非线性源-跨场灵敏度误差。三轴传感器轴的正交性应主要由反馈线圈的方向定义,而灵敏度由反馈线圈常数定义。提出了反馈场的均匀性和传感器内部布局对矢量补偿三轴磁通门磁强计的校准参数的影响。

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