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首页> 外文期刊>Journal of biomechanical engineering. >Vertical Jump Height Estimation Algorithm Based on Takeoff and Landing Identification Via Foot-Worn Inertial Sensing
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Vertical Jump Height Estimation Algorithm Based on Takeoff and Landing Identification Via Foot-Worn Inertial Sensing

机译:基于起飞和降落识别的垂直跳跃高度估计算法通过脚磨损惯性传感

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摘要

Vertical jump height is widely used for assessing motor development, functional ability, and motor capacity. Traditional methods for estimating vertical jump height rely on force plates or optical marker-based motion capture systems limiting assessment to people with access to specialized laboratories. Current wearable designs need to be attached to the skin or strapped to an appendage which can potentially be uncomfortable and inconvenient to use. This paper presents a novel algorithm for estimating vertical jump height based on foot-worn inertial sensors. Twenty healthy subjects performed countermovement jumping trials and maximum jump height was determined via inertial sensors located above the toe and under the heel and was compared with the gold standard maximum jump height estimation via optical marker-based motion capture. Average vertical jump height estimation errors from inertial sensing at the toe and heel were -2.2 +/- 2.1 cm and -0.4 +/- 3.8 cm, respectively. Vertical jump height estimation with the presented algorithm via inertial sensing showed excellent reliability at the toe (ICC(2,1) = 0.98) and heel (ICC(2,1) = 0.97). There was no significant bias in the inertial sensing at the toe, but proportional bias (b = 1.22) and fixed bias (a = -10.23cm) were detected in inertial sensing at the heel. These results indicate that the presented algorithm could be applied to foot-worn inertial sensors to estimate maximum jump height enabling assessment outside of traditional laboratory settings, and to avoid bias errors, the toe may be a more suitable location for inertial sensor placement than the heel.
机译:垂直跳跃高度广泛用于评估电机开发,功能能力和电机容量。估计垂直跳高高度依靠力板或基于光学标记的运动捕获系统限制评估对专业实验室的人的传统方法。当前的可穿戴设计需要附着在皮肤上或绑在附件上,这可能是可能是不舒服和不方便的。本文介绍了一种基于脚磨损惯性传感器估算垂直跳高高度的新算法。通过位于脚趾上方的惯性传感器和鞋跟下方确定了20个健康的受试者和最大跳跃高度,并通过基于光学标记的运动捕获与金标准最大跳高高度估计进行比较。脚趾和脚跟处的惯性感测的平均垂直跳跃高度估计误差分别为-2.2 +/- 2.1cm和-0.4 +/- 3.8厘米。通过惯性感测具有所提出的算法的垂直跳跃高度估计在脚趾(ICC(2,1)= 0.98)和鞋跟(ICC(2,1)= 0.97)上具有出色的可靠性。在脚趾处的惯性感测中没有显着的偏压,但在鞋跟处的惯性感测中检测到比例偏差(B = 1.22)和固定偏差(A = -10.23cm)。这些结果表明,所提出的算法可以应用于脚磨损的惯性传感器,以估计传统实验室环境之外的最大跳跃高度能够评估,并且为了避免偏置误差,脚趾可以是惯性传感器放置的更合适的位置而不是鞋跟。

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    Shanghai Jiao Tong Univ Sch Mech Engn State Key Lab Mech Syst &

    Vibrat 800 Dongchuan Rd Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mech Engn State Key Lab Mech Syst &

    Vibrat 800 Dongchuan Rd Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mech Engn State Key Lab Mech Syst &

    Vibrat 800 Dongchuan Rd Shanghai 200240 Peoples R China;

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  • 正文语种 eng
  • 中图分类 生物医学工程;
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