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High Sensitivity Differential Giant Magnetoresistance (GMR) Based Sensor for Non-Contacting DC/AC Current Measurement

机译:基于高灵敏度差分巨磁阻(GMR)的传感器用于非接触式DC / AC电流测量

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摘要

This paper presents the design and implementation of a high sensitivity giant magnetoresistance (GMR) based current sensor with a broad range of applications. The novelty of our approach consists in using a double differential measurement system, based on commercial GMR sensors, with an adjustable biasing system used to linearize the field response of the system. The work aims to act as a fully-operational proof of concept application, with an emphasis on the mode of operation and methods to improve the sensitivity and linearity of the measurement system. The implemented system has a broad current measurement range from as low as 75 mA in DC and 150 mA in AC up to 4 A by using a single setup. The sensor system is also very low power, consuming only 6.4 mW. Due to the way the sensors are polarized and positioned above the U-shaped conductive band through which the current to be measured is flowing, the differential setup offers a sensitivity of about between 0.0272 to 0.0307 V/A (signal from sensors with no amplifications), a high immunity to external magnetic fields, low hysteresis effects of 40 mA, and a temperature drift of the offset of about −2.59 × 10 A/°C. The system provides a high flexibility in designing applications where local fields with very low amplitudes must be detected. This setup can be redesigned for a wide range of applications, thus allowing further specific optimizations, which would provide an even greater accuracy and a significantly extended operation range.
机译:本文介绍了基于高灵敏度巨磁阻(GMR)的电流传感器的设计和实现,具有广泛的应用范围。我们方法的新颖性在于使用基于商业GMR传感器的双差分测量系统,以及用于线性化系统场响应的可调偏置系统。这项工作旨在充当概念的完全可操作的证明,重点在于操作模式和方法,以提高测量系统的灵敏度和线性度。所实施的系统具有很宽的电流测量范围,通过使用单个设置,直流测量范围就低至75 mA,交流测量范围低至150 mA,最高4A。传感器系统的功耗也非常低,仅消耗6.4 mW。由于传感器被极化并位于待测电流流过的U形导电带上方的方式,因此差分设置的灵敏度约为0.0272至0.0307 V / A(来自传感器的信号,无放大信号) ,对外部磁场的高抗扰性,40 mA的低磁滞效应以及偏移约为-2.59×10 A /°C的温度漂移。该系统在设计应用中提供了高度的灵活性,在这些应用中必须检测到振幅非常低的局部场。可以针对广泛的应用重新设计此设置,从而允许进行进一步的特定优化,这将提供更高的精度和显着扩展的操作范围。

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