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Fluxgate Magnetometers Application Onboard UAVs Features

机译:Fluxgate Magnetomers应用程序在板载UAVS功能

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The operation of flux-gate magnetometers (FGMs) onboard moving carriers faces several difficulties that limit their application in geophysics. Specifically, when FGM is used onboard UAV (such as drone) it has essential space rotation. As we show in the paper, it may create interference up to the value overcoming the useful signal. We show that the obstacles limiting the FGM sensitivity threshold are the FGM axes non-orthogonality and its sensors transformation factor non-uniformity. A possible solution of this problem is proposed: not to try to make these values as small as possible, but to determine them after production at thorough calibration and then use them at data processing. A new method to determine the real FGM channels mutual orthogonality deflection and transformation factors non-identity with given precision is described and experimentally confirmed.
机译:磁通栅磁力计(FGMS)车载移动载体的操作面临着限制其在地球物理中的应用的几个困难。 具体而言,当FGM使用板载UAV(例如无人机)时,它具有基本的空间旋转。 正如我们在论文中所展示的那样,它可能会产生克服有用信号的值的干扰。 我们表明,限制FGM灵敏度阈值的障碍是FGM轴非正交性,其传感器变换因子不均匀性。 提出了一个可能的解决问题的解决方案:不要尝试尽可能小的这些值,而是在彻底校准下生产后确定它们,然后在数据处理下使用它们。 描述并通过给定精度来确定真实FGM通道相互正交性偏转和转换因子的新方法,并通过给定精度来确认。

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