Sensitivity Limits and Functional Characteristics of Fluxgate Sensors with Rod-Shaped Magnetic Cores

Dominika Kopala, Anna Ostaszewska-Liżewska, R. Szewczyk
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Abstract

Highly sensitive fluxgate magnetic field sensors with rod-shaped cores are widely used for non-destructive testing as well as for industrial applications. However, in case of both Foerster and Vacquier (two-core sensors configurations), fluxgate sensors sensitivity is directly connected with the relative magnetic permeability of the sensor’s core. It should be highlighted that the magnetic permeability of rod-shaped magnetic cores is driven mainly by the demagnetization factor determined by its slenderness (aspect ratio). The paper presents the analyses of sensitivity limits of fluxgate sensors with rod-shaped cores. On the base of estimations of demagnetization factor specific for fluxgate sensors, it is shown that in case of rod-shaped cores, the sensor’s sensitivity is connected with the shape of the core rather than its relative magnetic permeability. This conclusion is essential during the development and optimization of functional characteristics of fluxgate sensors.
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棒状磁芯磁通门传感器的灵敏度极限和功能特性
具有棒状磁芯的高灵敏度磁通门磁场传感器广泛用于无损检测以及工业应用。然而,在Foerster和Vacquier(双核传感器配置)的情况下,磁通门传感器的灵敏度与传感器核心的相对磁导率直接相关。需要强调的是,棒状磁芯的磁导率主要由其长细比(长径比)决定的退磁因子驱动。本文对棒状磁通门传感器的灵敏度极限进行了分析。通过对磁通门传感器特有的退磁系数的估计,表明对于棒状磁芯,传感器的灵敏度与磁芯形状有关,而与相对磁导率无关。这一结论对磁通门传感器功能特性的开发和优化具有重要意义。
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