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Modelling vertical human walking forces using self-sustained oscillator

机译:使用自持振荡器对垂直人类步行力建模

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This paper proposes a model of a self-sustained oscillator which can generate reliably the vertical contact force between the feet of a healthy pedestrian and the supporting flat rigid surface. The model is motivated by the self-sustained nature of the walking process, i.e. a pedestrian generates the required inner energy to sustain its repetitive body motion. The derived model is a fusion of the well-known Rayleigh, Van der Pol and Duffing oscillators. Some additional nonlinear terms are added to produce both the odd and even harmonics observed in the experimentally measured force data. The model parameters were derived from force records due to twelve pedestrians walking on an instrumented treadmill at ten speeds using a linear least square technique. The stability analysis was performed using the energy balance method and perturbation method. The results obtained from the model show a good agreement with the experimental results.
机译:本文提出了一种自持振荡器的模型,该振荡器可以可靠地产生健康行人的脚与支撑平面刚性表面之间的垂直接触力。该模型受行走过程的自我维持性质的激励,即行人产生所需的内能以维持其重复的身体运动。导出的模型是著名的瑞利,范德波尔和达芬振荡器的融合。添加了一些其他非线性项,以产生在实验测量的力数据中观察到的奇数和偶数谐波。模型参数来自力记录,该力记录是由于使用线性最小二乘技术以十二种速度在仪器化的跑步机上行走的十二名行人所致。使用能量平衡法和微扰法进行稳定性分析。从模型获得的结果与实验结果吻合良好。

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