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A data-driven wavelet-based approach for generating jumping loads

机译:一种基于数据驱动的基于小波的生成跳跃载荷的方法

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This paper suggests an approach to generate human jumping loads using wavelet transform and a database of individual jumping force records. A total of 970 individual jumping force records of various frequencies were first collected by three experiments from 147 test subjects. For each record, every jumping pulse was extracted and decomposed into seven levels by wavelet transform. All the decomposition coefficients were stored in an information database. Probability distributions of jumping cycle period, contact ratio and energy of the jumping pulse were statistically analyzed. Inspired by the theory of DNA recombination, an approach was developed by interchanging the wavelet coefficients between different jumping pulses. To generate a jumping force time history withNpulses, wavelet coefficients were first selected randomly from the database at each level. They were then used to reconstructNpulses by the inverse wavelet transform. Jumping cycle periods and contract ratios were then generated randomly based on their probabilistic functions. These parameters were assigned to each of theNpulses which were in turn scaled by the amplitude factorsβito account for energy relationship between successive pulses. The final jumping force time history was obtained by linking all theNcycles end to end. This simulation approach can preserve the non-stationary features of the jumping load force in time-frequency domain. Application indicates that this approach can be used to generate jumping force time history due to single people jumping and also can be extended further to stochastic jumping loads due to groups and crowds.
机译:本文提出了一种使用小波变换和单个跳跃力记录数据库来生成人类跳跃载荷的方法。通过三个实验从147个测试对象中总共收集了970个不同频率的个人跳跃力记录。对于每个记录,提取每个跳跃脉冲,并通过小波变换将其分解为七个级别。所有分解系数都存储在信息数据库中。对跳跃周期的概率分布,接触比和跳跃脉冲的能量进行了统计分析。受到DNA重组理论的启发,通过在不同的跳跃脉冲之间交换小波系数,开发了一种方法。为了生成具有Npulses的跳跃力时间历史记录,首先从每个级别的数据库中随机选择小波系数。然后通过逆小波变换将它们用于重建Npulses。然后根据其概率函数随机生成跳跃周期和收缩率。这些参数被分配给N个脉冲中的每一个,这些N个脉冲又被振幅因子βito定标,以解释连续脉冲之间的能量关系。最终的跳跃力时间历史记录是通过将所有N个循环的首尾相连来获得的。该仿真方法可以在时频域中保留跳跃荷载的非平稳特征。应用表明,该方法可用于生成由于单人跳跃而产生的跳跃力时间历史记录,还可扩展到由于群体和人群而引起的随机跳跃负荷。

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