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Improvement of measurement accuracy for the three-dimensional electromagnetic articulograph by optimizing the alignment of the transmitter coils

机译:通过优化发射线圈的对齐方式来提高三维电磁关节造影仪的测量精度

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References(15) The alignment of transmitter coils for the three-dimensional electromagnetic articulograph (3D-EMA), an instrument used to measure articulatory movements, was studied. Receiver coils of the 3D-EMA are used as position markers and are placed in alternating magnetic field produced by multiple transmitter coils. The estimation of the state (the position and orientation) of each receiver coil is based on the minimization of the signal error between the measured and predicted receiver signals using a model of the magnetic field. Previous studies report a noticeable increase in the position estimation error irrespective of small signal error at a specific portion of the measurement region. The existence of the non-uniqueness problem in the position estimation is hypothesized to be the cause of this problem. To resolve the problem, we optimized the alignment of the transmitter coils by maximizing the difference between the receiver signals for any pair of states in the measurement region and evaluated the alignment by performing computer simulations and actual measurement. As a result, a measurement accuracy of approximately 0.4 mm was obtained.
机译:参考文献(15)研究了用于测量关节运动的三维三维电磁关节造影仪(3D-EMA)的发射器线圈的对准情况。 3D-EMA的接收器线圈用作位置标记,并放置在多个发射器线圈产生的交变磁场中。对每个接收器线圈的状态(位置和方向)的估计是基于使用磁场模型将测量和预测接收器信号之间的信号误差最小化的。先前的研究报告了位置估计误差的显着增加,而与测量区域特定部分的小信号误差无关。假设位置估计中存在非唯一性问题是导致该问题的原因。为了解决该问题,我们通过最大化测量区域中任何一对状态的接收器信号之间的差异来优化发射器线圈的对准,并通过执行计算机仿真和实际测量来评估对准。结果,获得约0.4mm的测量精度。

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