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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >The Static Accuracy And Calibration Of Inertial Measurement Units For 3d Orientation
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The Static Accuracy And Calibration Of Inertial Measurement Units For 3d Orientation

机译:3d方向惯性测量单元的静态精度和校准

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Inertial measurement units (IMUs) are integrated electronic devices that contain accelerometers, magnetometers and gyroscopes. Wearable motion capture systems based on IMUs have been advertised as alternatives to optical motion capture. In this paper, the accuracy of five different IMUs of the same type in measuring 3D orientation in static situations, as well as the calibration of the accelerometers and magnetometers within the IMUs, has been investigated. The maximum absolute static orientation error was 5.2°, higher than the 1° claimed by the vendor. If the IMUs are re-calibrated at the time of measurement with the re-calibration procedure described in this paper, it is possible to obtain an error of less than 1°, in agreement with the vendor's specifications (XSens Technologies B.V. 2005. Motion tracker technical documentation Mtx-B. Version 1.03. Available from: www.xsens.com). The new calibration appears to be valid for at least 22 days providing the sensor is not exposed to high impacts. However, if several sensors are 'daisy chained' together changes to the magnetometer bias can cause heading errors of up to 15°. The results demonstrate the non-linear relationship between the vendor's orthogonality claim of < 0.1 ° and the accuracy of 3D orientation obtained from factory calibrated IMUs in static situations. The authors hypothesise that the high magnetic dip (64°) in our laboratory may have exacerbated the errors reported. For biomechanical research, small relative movements of a body segment from a calibrated position are likely to be more accurate than large scale global motion that may have an error of up to 9.8°.
机译:惯性测量单元(IMU)是包含加速度计,磁力计和陀螺仪的集成电子设备。基于IMU的可穿戴运动捕获系统已经被广告宣传为光学运动捕获的替代方案。本文研究了五种相同类型的IMU在静态情况下测量3D方向的精度,以及IMU中加速度计和磁力计的校准。最大绝对静态方位误差为5.2°,高于供应商声称的1°。如果在测量时使用本文所述的重新校准程序对IMU进行了重新校准,则与供应商的规范一致(XSens Technologies BV2005。Motiontracker,其误差可能小于1°。技术文档Mtx-B,版本1.03。可从以下网站获得:www.xsens.com)。如果传感器没有受到强烈撞击,则新的校准似乎至少可以有效22天。但是,如果将多个传感器“菊花链式”连接在一起,则磁力计偏置的变化可能会导致航向误差高达15°。结果表明,供应商的正交声明<0.1°与静态情况下从工厂校准的IMU获得的3D定向精度之间存在非线性关系。作者假设我们实验室的高磁倾角(64°)可能加剧了所报告的误差。对于生物力学研究,从校准位置开始的小段身体相对运动可能比可能误差高达9.8°的大规模全局运动更为精确。

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