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Inductive localization accuracy of a passive 3-D coil in an Industry 4.0 environment

机译:行业4.0环境中无源3-D线圈的归纳定位精度

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In this paper a localization system of a passive 3-D coil is proposed and signal uncertainties due to the 3-D coil's arbitrary orientation are analyzed. The 3-D coil is excited by an alternating primary magnetic field. Geometrically distributed pick-up coils measure the 3-D coil's secondary field. By means of a simulated look-up table that assigns expected voltages from the pick-up coils to the positions of the 3-D coil, the position of the 3-D coil is deduced by a least-squares approach. A basic assumption is that the secondary field is invariant to the orientation of the 3-D coil. This allows a reduction of the computational effort for the look-up table generation and the table search during the localization phase since for each position the field distribution for only one orientation has to be calculated. However, the assumption of invariance to rotation is only valid for a dipole model. In this paper we investigate the localization error introduced by this assumption when using 3-D coils with a geometric extent in an inhomogeneous primary field. Optimized localization methods that decrease the statistical error are proposed. The theoretical results are verified with measurements conducted on a laboratory system.
机译:在本文中,提出了一种无源3-D线圈的定位系统,并分析了由3-D线圈的任意取向引起的信号不确定性。 3-D线圈通过交流磁场激发。几何分布式拾取线圈测量3-D线圈的次级场。借助于模拟查找表,该表将来自拾取线圈的预期电压分配给3-D线圈的位置,通过最小二乘法推断出3-D线圈的位置。基本假设是次级场是不变的3-D线圈的方向。这允许减少查找表生成的计算工作和在本地化阶段期间的表搜索,因为对于每个位置,必须计算仅一个方向的场分布。然而,对旋转的不变性的假设仅对偶极模型有效。在本文中,我们研究了在非均匀主场中使用几何范围的三维线圈引入的本地化误差。提出了降低统计误差的优化本地化方法。通过在实验室系统上进行的测量来验证理论结果。

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