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Interpolation Volume Calibration: A Multisensor Calibration Technique for Electromagnetic Trackers

机译:插值体积校准:电磁跟踪仪的多传感器校准技术

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AC electromagnetic trackers are well suited for head tracking but are adversely affected by conductive and ferromagnetic materials. Tracking performance can be improved by mapping the tracking volume to produce coefficients that correct position and orientation (PnO) measurements caused by stationary distorting materials. The mapping process is expensive and time consuming, requiring complicated high-precision equipment to provide registration of the measurements to the source reference frame. In this study, we develop a new approach to mapping that provides registration of mapping measurements without precision equipment. Our method, i.e., the interpolation volume calibration system, uses two simple fixtures, each with multiple sensors in a rigid geometry, to determine sensor PnO in a distorted environment without mechanical measurements or other tracking technologies. We test our method in a distorted tracking environment, constructing a lookup table of the magnetic field that is used as the basis for distortion compensation. The new method compares favorably with the traditional approach providing a significant reduction in cost and effort.
机译:交流电磁跟踪器非常适合用于头部跟踪,但是会受到导电和铁磁材料的不利影响。可以通过映射跟踪体积以产生系数来改善跟踪性能,该系数可以校正由固定变形材料引起的位置和方向(PnO)测量。映射过程既昂贵又耗时,需要复杂的高精度设备才能将测量值配准到源参考帧。在这项研究中,我们开发了一种新的制图方法,该方法无需精密设备即可提供制图测量结果的配准。我们的方法,即插值体积校准系统,使用两个简单的夹具(每个夹具都具有多个刚性几何形状的传​​感器)来确定变形环境中的传感器PnO,而无需机械测量或其他跟踪技术。我们在失真的跟踪环境中测试我们的方法,构造了一个磁场查找表,该表用作失真补偿的基础。与传统方法相比,新方法具有优势,可显着降低成本和工作量。

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