Control Systems Group, Technische Universität Berlin, 10623 Berlin, Germany.
Department Artificial Intelligence in Biomedical Engineering, Friedrich-Alexander-Universität Erlangen-Nürnberg, 91052 Erlangen, Germany.
Sensors (Basel). 2022 Dec 15;22(24):9850. doi: 10.3390/s22249850.
Human motion analysis using inertial measurement units (IMUs) has recently been shown to provide accuracy similar to the gold standard, optical motion capture, but at lower costs and while being less restrictive and time-consuming. However, IMU-based motion analysis requires precise knowledge of the orientations in which the sensors are attached to the body segments. This knowledge is commonly obtained via time-consuming and error-prone anatomical calibration based on precisely defined poses or motions. In the present work, we propose a self-calibrating approach for magnetometer-free joint angle tracking that is suitable for joints with two degrees of freedom (DoF), such as the elbow, ankle, and metacarpophalangeal finger joints. The proposed methods exploit kinematic constraints in the angular rates and the relative orientations to simultaneously identify the joint axes and the heading offset. The experimental evaluation shows that the proposed methods are able to estimate plausible and consistent joint axes from just ten seconds of arbitrary elbow joint motion. Comparison with optical motion capture shows that the proposed methods yield joint angles with similar accuracy as a conventional IMU-based method while being much less restrictive. Therefore, the proposed methods improve the practical usability of IMU-based motion tracking in many clinical and biomedical applications.
使用惯性测量单元(IMU)进行人体运动分析最近已被证明可以提供与光学运动捕捉相似的精度,但成本更低,限制和耗时更少。然而,基于 IMU 的运动分析需要精确了解传感器连接到身体部位的方向。这种知识通常是通过基于精确定义的姿势或运动的耗时且容易出错的解剖校准获得的。在本工作中,我们提出了一种适用于具有两个自由度(DoF)的关节(如肘部、脚踝和掌指关节)的无磁强计关节角度跟踪的自校准方法。所提出的方法利用角速度和相对方向的运动学约束,同时识别关节轴和航向偏移。实验评估表明,所提出的方法仅从十秒任意肘部关节运动即可估计合理且一致的关节轴。与光学运动捕捉的比较表明,所提出的方法产生的关节角度与传统的基于 IMU 的方法具有相似的精度,而限制要小得多。因此,所提出的方法提高了基于 IMU 的运动跟踪在许多临床和生物医学应用中的实际可用性。