设计因素对微磁通门传感元件的影响研究

M. Elkattan, H. Mostafa, A. Khalil
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引用次数: 0

摘要

磁通门磁强计是最重要的磁场传感器之一。磁通门是矢量磁场传感器,在需要纳米特斯拉精度和皮特斯拉分辨率测量时用于低频。磁通门传感器的工作原理是将非线性磁性材料驱动到周期性饱和状态,以在一定的测量范围内检测弱磁场。磁通门传感器的主要部件是构成其传感元件的磁芯。因此,为了确保磁通门传感器的正确设计,必须准确预测磁芯的行为。本文通过数值方法详细研究了磁通门铁心的性能及其对操作因素和几何设计因素的依赖关系。此外,所进行的研究涉及到磁芯的磁性材料部分的适当模型,以获得更好地代表磁通门传感元件在不同工作条件下的行为。所提出的数值方法的结果对磁通门铁心对所研究的设计因素的响应提供了更可靠的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of the Impact of Design Factors on Micro-Fluxgate Sensing Element
One of the most important magnetic field sensors is the fluxgate magnetometer. Fluxgates are vectorial magnetic field sensors, used at low frequencies when a nano tesla accuracy and pico tesla resolution measurements are required. Fluxgate sensor operation depends on driving a nonlinear magnetic material into periodical saturation in order to detect weak magnetic fields at a certain measuring range. The main component of a fluxgate sensor is the core that constitutes its sensing element. Thus, an accurate prediction of the core’s behavior is mandatory in order to ensure a proper design of the fluxgate sensor. In this paper, a detailed study on the fluxgate core’s performance, and its dependence of operational and geometrical design factors, is done through numerical approach. Furthermore, the conducted study involves an appropriate model of the magnetic material part of the core, to get a better representative behavior of the fluxgate sensing element against different operating conditions. Results of the proposed numerical approach give a more reliable insight about the response of the fluxgate core against the investigated design factors.
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