2014
DOI: 10.1063/1.4856675
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Compact fluxgate magnetic full-tensor gradiometer with spherical feedback coil

Abstract: The magnetic tensor gradiometer, which is used for measuring the spatial derivatives of three orthogonal magnetic field components, is an important magnetic field characterization tool. Here, the construction of a magnetic full-tensor gradiometer is described, which utilizes four fluxgates arranged on a planar cross structure, and a single, triaxial, spherical feedback coil assembly. In this arrangement, one of the fluxgates is used as a reference, controlling the currents through the feedback coils. Since the… Show more

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Cited by 35 publications
(19 citation statements)
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“…(6) |∇B| varies by a factor of 4 depending on the field direction. Tensor gradiometers make use of Maxwell's laws to infer the complete tensor from as few as five independent gradient terms [6,9,10,30]. Gradients measured over baselines in the x-z plane quantify a systematic error in our inference; the equality of ∂B z /∂x and ∂B x /∂z is violated by < 2.5 (7) nT mm −1 .…”
Section: Resultsmentioning
confidence: 99%
“…(6) |∇B| varies by a factor of 4 depending on the field direction. Tensor gradiometers make use of Maxwell's laws to infer the complete tensor from as few as five independent gradient terms [6,9,10,30]. Gradients measured over baselines in the x-z plane quantify a systematic error in our inference; the equality of ∂B z /∂x and ∂B x /∂z is violated by < 2.5 (7) nT mm −1 .…”
Section: Resultsmentioning
confidence: 99%
“…The contribution of these features to its maintaining popularity is quite big. For this reason, the use of fluxgate sensors in different application areas is increasing day by day [12][13][14][15][16][17]. Finding an optimal design of fluxgate sensor suitable for nondestructive testing (NDT) and other small area applications requiring local field information were extensively investigated in our previous work [18].…”
Section: Local Magnetic Field Distribution Through the Magnetic Cardmentioning
confidence: 99%
“…组成磁梯度张量测量系统TMGS用来探测未爆炸物 UXO, 取得了一定效果 [42] . 吉林大学采用4个三分量 磁通门传感器组成全张量磁梯度探头, 并利用球形 反馈线圈补偿环境背景磁场使磁通门传感器工作在 零磁场附件以提高其测量灵敏度(图6) [43] . 该全张量 声干扰, 进一步提高测量精度 [46] .…”
Section: 美国地质调查所(Usgs)利用12个磁通门磁力仪unclassified