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通过反对称偏置场消除地球磁场对磁弹性共振传感器的影响。

Removal of earth's magnetic field effect on magnetoelastic resonance sensors by an antisymmetric bias field.

作者信息

Bergmair Bernhard, Huber Thomas, Bruckner Florian, Vogler Christoph, Suess Dieter

机构信息

Institute of Solid State Physics, Vienna University of Technology, Wiedner Hauptstr. 8, 1040 Wien, Austria ; Institute of Analysis and Scientific Computing, Vienna University of Technology, Wiedner Hauptstr. 8, 1040 Wien, Austria.

出版信息

Sens Actuators A Phys. 2012 Aug;183(44-2):11-15. doi: 10.1016/j.sna.2012.05.013.

Abstract

Magnetoelastic sensors are used in a wide field of wireless sensing applications. The sensing element is a low-cost magnetostrictive ribbon whose resonant frequency depends on the measured quantity. The accuracy of magnetoelastic sensors is limited by the fact that the resonant frequency is also affected by the earth's magnetic field. In this paper we present a technique to minimize this effect by applying an antisymmetric magnetic bias field to the ribbon. The ribbon's response to external perturbation fields was measured and compared to a conventional sensor design. Our results show that the influence of the earth's magnetic field could be reduced by 77%.

摘要

磁弹性传感器被广泛应用于无线传感领域。传感元件是一种低成本的磁致伸缩带,其共振频率取决于被测数量。磁弹性传感器的精度受到共振频率也会受到地磁场影响这一事实的限制。在本文中,我们提出了一种通过向磁致伸缩带施加反对称磁偏置场来最小化这种影响的技术。测量了磁致伸缩带对外部扰动场的响应,并与传统传感器设计进行了比较。我们的结果表明,地磁场的影响可以降低77%。

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