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Numerical Study on the Improvement of Detection Accuracy for a Wireless Motion Capture System

机译:提高无线运动捕捉系统检测精度的数值研究

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A detection technique having an accuracy of better than 1 mm is required for body motion analysis in the field of medical treatment. A wireless magnetic motion capture system is one such effective detection technique. We propose a candidate system using an LC resonant magnetic marker (LC marker). Previous studies have showed that the system is capable of repeatable position detection accuracy of better than 1 mm if the system has an adequate signal-to-noise (S/N ratio). However, there are some cases in which the detection results include unignorable errors because some approximations, e.g. a magnetic dipole assumption of the LC marker, are applied to solve the inverse problem to determine the position and orientation of the LC marker. Therefore, a numerical analysis is employed to realize a motion capture system having a high detection accuracy. To elucidate the problem of detection error, the influence of variations in the sizes of the LC marker and the pick-up coil are considered in the numerical simulation. After studying the analysis, the main cause of detection error is determined to be the size of the pick-up coil rather than the size of the LC marker. It was also is found that a pick-up coil measuring 10 mm in diameter with a wound coil width of 1 mm achieves a detection accuracy of better than 0.1 mm.
机译:在医学领域中的身体运动分析需要具有优于1mm的精度的检测技术。无线磁运动捕获系统就是这样一种有效的检测技术。我们提出了使用LC共振磁性标记(LC标记)的候选系统。先前的研究表明,如果系统具有足够的信噪比(信噪比),则该系统能够重复进行的位置检测精度优于1 mm。但是,在某些情况下,由于一些近似值,例如,检测结果包括不可忽略的误差。应用LC标记的磁偶极子假设来解决反问题,以确定LC标记的位置和方向。因此,采用数值分析来实现具有高检测精度的运动捕捉系统。为了阐明检测误差的问题,在数值模拟中考虑了LC标记和拾取线圈尺寸变化的影响。在研究了分析之后,确定检测错误的主要原因是拾取线圈的大小,而不是LC标记的大小。还发现,直径为10mm的拾波线圈的缠绕线圈宽度为1mm,其检测精度优于0.1mm。

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