Higher order loop corrections for short range magnetoquasistatic position tracking

D. Arumugam, J. Griffin, D. Stancil, D. Ricketts
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引用次数: 12

Abstract

Magnetoquasistatic position tracking has been shown to be an excellent technique to measure distances between an emitting and receiving loop for distances up to 50 m along a direction perpendicular to the surface normal of the loops [1]. For short distances from the emitting loop (i.e., less than about ten loop radii) there is an error in the estimated distance. In this paper, we examine the cause of this error and show that a significant portion is due to the simplification of the emitting loop as a simple magnetic dipole. By including a more accurate expression of the source field, errors can be significantly reduced. We show that the first correction term results in a reduction in rms and peak distance estimation error of 12.51 cm (54.44 %) and 11.27 cm (44.72 %), respectively, for distances less than 1.5δ, where δ is the skin depth.
用于近程磁准静态位置跟踪的高阶回路修正
准静磁位置跟踪已被证明是一种极好的技术,可以沿着垂直于线圈表面法线的方向测量距离达50米的发射和接收环路之间的距离[1]。对于距离发射环较短的距离(即小于10个环半径),估计距离存在误差。在本文中,我们研究了这种误差的原因,并表明很大一部分是由于将发射环简化为简单的磁偶极子。通过包含更精确的源字段表达式,可以显著减少误差。我们发现,当距离小于1.5δ (δ为皮肤深度)时,第一个校正项导致均方根和峰值距离估计误差分别减少12.51 cm(54.44%)和11.27 cm(44.72%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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