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A procedure to estimate normal and friction contact parameters in the stance phase of the human gait

机译:一种估计人体步态姿势阶段正常和摩擦接触参数的程序

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摘要

A new approach to estimate normal and tangential contact parameters in the foot-ground contact during human gait was proposed. A correct estimation of the contact parameters would be very important in the resolution of predictive forward dynamic problems. The normal contact forces have been well estimated in the literature. But accurate estimation of tangential forces has not been reached yet. This work proposed a new procedure to accurately estimate friction forces. The approach has been based on the consideration of the modulus of the tangential force instead of its components. This modulus was introduced together with the modulus of the normal contact force and its two associated moments in an optimization algorithm to fit the contact forces provided by the model to the experimental data obtained with a force plate. An inverse dynamics problem was solved as a step previous to the optimization algorithm. The results showed that both the normal and tangential forces and the moments in the horizontal plane were in agreement with the experimental measurements. This work also analyzed the influence on the results of the friction law. The results obtained with the general friction law, which considered dry (static and dynamic) and viscous friction, were compared with results provided by simpler laws. The analysis of the components of the friction forces pointed out the importance of the Stribeck component in the resultant force instead of the viscous friction which played a minimal role. But for modelling the stick-slip transition, the implementation of a general friction law is necessary.
机译:提出了一种新方法来估计人体步态脚踏接触中正常和切向接触参数的方法。在解决预测前向动态问题的解决方案中,对接触参数的正确估计将非常重要。在文献中,正常接触力估计很好。但尚未达到对切向力的准确估计。这项工作提出了一种准确估计摩擦力的新程序。该方法基于对切向力的模量而不是其组件的考虑。该模量与正常接触力的模量一起引入,并且在优化算法中将其两个相关矩的模量引入,以将模型提供的接触力与用力板获得的实验数据配合。逆动力学问题被解决是优化算法之前的步骤。结果表明,正常和切向力和水平平面中的时刻都与实验测量一致。这项工作还分析了对摩擦法结果的影响。将通过较简单的法律提供的结果进行了与常规摩擦法获得的结果,其考虑干燥(静态和动态)和粘性摩擦。对摩擦力的组件的分析指出了Stribeck组分在所得型力中的重要性而不是发挥最小作用的粘性摩擦。但对于粘滑过渡建模,必须实施一般摩擦法。

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