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Indirect Measurement of Ground Reaction Forces and Moments by Means of Wearable Inertial Sensors: A Systematic Review

机译:通过可穿戴惯性传感器间接测量地面反作用力和矩的矩:系统评价

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摘要

In the last few years, estimating ground reaction forces by means of wearable sensors has come to be a challenging research topic paving the way to kinetic analysis and sport performance testing outside of labs. One possible approach involves estimating the ground reaction forces from kinematic data obtained by inertial measurement units (IMUs) worn by the subject. As estimating kinetic quantities from kinematic data is not an easy task, several models and protocols have been developed over the years. Non-wearable sensors, such as optoelectronic systems along with force platforms, remain the most accurate systems to record motion. In this review, we identified, selected and categorized the methodologies for estimating the ground reaction forces from IMUs as proposed across the years. Scopus, Google Scholar, IEEE Xplore, and PubMed databases were interrogated on the topic of Ground Reaction Forces estimation based on kinematic data obtained by IMUs. The identified papers were classified according to the methodology proposed: (i) methods based on direct modelling; (ii) methods based on machine learning. The methods based on direct modelling were further classified according to the task studied (walking, running, jumping, etc.). Finally, we comparatively examined the methods in order to identify the most reliable approaches for the implementation of a ground reaction force estimator based on IMU data.
机译:在过去几年中,通过可穿戴传感器估算地面反作用力已经成为一个具有挑战性的研究主题,铺平了实验室外的动力学分析和运动性能测试。一种可能的方法涉及估计由受试者佩戴的惯性测量单元(IMU)获得的运动学数据的地面反作用力。由于估算了来自运动数据的动力量并不是一项简单的任务,多年来已经开发了多个模型和协议。不可穿戴传感器,例如光电系统以及力平台,仍然是最精确的记录运动的系统。在本次审查中,我们确定了,选择并将其分类为估算IMU的地面反作用力,如多年来提出的。 Scopus,Google Scholar,IEEE XPLORE和PUBMED数据库在基于IMU获得的运动数据的地面反作用力估算主题上询问。根据所提出的方法进行分类所识别的纸张:(i)基于直接建模的方法; (ii)基于机器学习的方法。根据直接建模的方法根据研究的任务进一步分类(行走,运行,跳跃等)。最后,我们相比检查了方法,以确定基于IMU数据实现地面反作用力估算器的最可靠的方法。

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