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首页> 外文期刊>Journal of structural engineering >Measuring Ground Reaction Force and Quantifying Variability in Jumping and Bobbing Actions
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Measuring Ground Reaction Force and Quantifying Variability in Jumping and Bobbing Actions

机译:测量地面反作用力并量化跳跃和摆动动作中的变异性

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摘要

This paper investigates variability in bobbing and jumping actions, including variations within a population of eight test subjects (intersubject variability) and variability on a cycle-by-cycle basis for each individual (intrasubject variability). A motion-capture system and a force plate were employed to characterize the peak ground reaction force, frequency of the activity, range of body movement, and dynamic loading factors for at least first three harmonics. In addition, contact ratios were also measured for jumping activity. It is confirmed that most parameters are frequency dependent and vary significantly between individuals. Moreover, the study provides a rare insight into intrasubject variations, revealing that it is more difficult to perform bobbing in a consistent way. The paper demonstrates that the vibration response of a structure is sensitive to cycle-by-cycle variations in the forcing parameters, with highest sensitivity to variations in the activity frequency. In addition, this paper investigates whether accurate monitoring of the ground reaction force is possible by recording the kinematics of a single point on the human body. It is concluded that monitoring the C7th vertebrae at the base of the neck is appropriate for recording frequency content of up to 4Hz for bobbing and 5Hz for jumping. The results from this study are expected to contribute to the development of stochastic models of human actions on assembly structures. The proposed simplified measurements of the forcing function have potential to be used for monitoring groups and crowds of people on structures that host sports and music events and characterizing human-structure and human-human interaction effects.
机译:本文研究了击球和跳跃动作的变异性,包括八个测试对象群体中的变异性(受试者间变异性)和每个个体逐周期的变异性(受试者内部变异性)。使用运动捕捉系统和测力板来表征地面反作用力峰值,活动频率,身体运动范围以及至少前三个谐波的动态载荷系数。另外,还测量了跳跃比的接触比。可以确定的是,大多数参数与频率有关,并且个体之间差异很大。此外,该研究提供了对受试者内部变异的罕见见解,表明以一致的方式进行摆动变得更加困难。该论文表明,结构的振动响应对强迫参数的逐周期变化敏感,对活动频率变化的敏感度最高。另外,本文研究了通过记录人体上单点的运动学是否可以精确监测地面反作用力。结论是,监视颈部底部的C7椎骨适合记录高达4Hz的跳动和5Hz的跳动的频率内容。预期该研究的结果将有助于人类对装配结构的随机行为模型的发展。所提出的简化的强迫函数测量方法有潜力用于监测人群和人群在承载体育和音乐事件并表征人与人和人与人之间的相互作用的结构上。

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