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A shielded fluxgate sensor for spatially resolved measurements of magnetic dipole fields

机译:屏蔽磁通门传感器,用于空间分辨的偶极子场测量

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摘要

The field and spatial resolution of fluxgate magnetometers in magnetic dipole fields were enhanced by incorporating a soft magnetic shielding layer surrounding the sensor. It is used to capture the stray fields from displaced dipole sources not being located directly under the sensor and reduces the coupling of their magnetic fields into the sensing fluxgate core. When dipole fields are the subject of the measurement, the shielding layer can also be used to capture homogeneous noise fields from the surrounding environment and to reduce their measurement signal. The field and spatial resolution of shielded sensors were measured in magnetic dipole fields. The impact of the shielding on homogeneous fields was studied by the sensor's sensitivity. It was found that both the field and the spatial resolution in dipole fields can be improved whereas the sensitivity to homogeneous (noise) fields will be reduced. The findings are supported by finite element simulations. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在传感器周围引入软磁屏蔽层,可以提高磁偶极子磁场中磁通门磁力计的磁场分辨率和空间分辨率。它用于捕获未位于传感器正下方的位移偶极子源的杂散场,并减少其磁场耦合到感应磁通门磁芯中。当偶极场是测量的对象时,屏蔽层也可以用于捕获周围环境中的均匀噪声场并减少其测量信号。在磁偶极子场中测量了屏蔽传感器的场和空间分辨率。通过传感器的灵敏度研究了屏蔽对均匀场的影响。已经发现,偶极子场的场和空间分辨率都可以提高,而对均匀(噪声)场的灵敏度将降低。这些发现得到了有限元模拟的支持。 (C)2015 Elsevier B.V.保留所有权利。

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