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Tracker calibration using tetrahedral mesh and tricubic spline models of warp

机译:使用四面体网格和三次三次样条曲线模型进行跟踪器校准

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This paper presents a three-level tracker calibration system that greatly reduces errors in tracked position and orientation. The first level computes an error-minimizing rigid body transform that eliminates the need for precise alignment of a tracker base frame. The second corrects for field warp by interpolating correction values stored with vertices in a tetrahedrization of warped space. The third performs an alternative field warp calibration by interpolating corrections in the parameter space of a tricubic spline model of field warp. The system is evaluated for field warp calibration near a passive-haptic panel in both low-warp and high-warp environments. The spline method produces the most accurate results, reducing median position error by over 90% and median orientation error by over 80% when compared to the use of only a rigid body transform.
机译:本文介绍了三级跟踪校准系统,极大地减少了跟踪位置和方向的错误。第一级别计算误差最小化刚体变换,其消除了跟踪器基帧的精确对准的需要。通过在翘曲的空间的四元化中,通过插入与顶点存储的校正值来实现现场翘曲的第二种校正。第三三是通过在现场翘曲的特定样条模型的参数空间中的插值校正来执行替代现场翘曲校准。在低翘曲和高脉冲环境中,评估该系统的现场翘曲校准。与仅使用刚体变换相比,样条方法通过超过90%的增量超过90%,产生最精确的结果,减少了90%以上的中位数误差。

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