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Hysteresis Compensation Based on Controlled Current Pulses for Magnetoresistive Sensors

机译:基于受控电流脉冲的磁阻传感器磁滞补偿

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摘要

This paper presents a novel hysteresis compensation method for increasing the measurement accuracy of magnetoresistive (MR) sensors such as anisotropic magnetoresistance (AMR), giant magnetoresistance (GMR), and tunnel magnetoresistance (TMR) sensors. A coil consisting of one winding is processed on top of the sensor element. This configuration allows short current pulses (positive and negative) to generate a defined magnet field, which should be much stronger than the field to be measured. In this case, the MR sensors can always be kept in the same magnetic loop (major loop) during the measurement cycle. By demodulating or averaging the output signal of the sensor, the influence of the sensors hysteresis can be largely reduced. A mixed signal circuit consisting of a field-programmable gate array, analog-to-digital converters and analog switches is used to generate the pulses. AMR, GMR, and TMR current sensors are chosen as examples in the experiment. Current measurements with and without controlled magnetic field pulse are compared. A hysteresis reduction to nearly 20% of the original value, by using the novel hysteresis compensation method, is reached.
机译:本文提出了一种新颖的磁滞补偿方法,用于提高磁阻(MR)传感器(如各向异性磁阻(AMR),巨磁阻(GMR)和隧道磁阻(TMR)传感器)的测量精度。在传感器元件的顶部处理一个由一个绕组组成的线圈。这种配置允许短电流脉冲(正和负)产生定义的磁场,该磁场应比要测量的磁场强得多。在这种情况下,在测量周期中,MR传感器始终可以保持在相同的磁环(主要回路)中。通过解调或平均传感器的输出信号,可以大大减少传感器滞后的影响。由现场可编程门阵列,模数转换器和模拟开关组成的混合信号电路用于生成脉冲。实验中以AMR,GMR和TMR电流传感器为例。比较有无磁场脉冲的电流测量结果。通过使用新颖的磁滞补偿方法,磁滞减小到原始值的近20%。

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