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A Modeling Framework to Investigate the Radial Component of the Pushrim Force in Manual Wheelchair Propulsion

机译:用于研究手动轮椅推进中推力径向分量的建模框架

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The ratio of tangential to total pushrim force, the so-called Fraction Effective Force (FEF), has been used to evaluate wheelchair propulsion efficiency based on the fact that only the tangential component of the force on the pushrim contributes to actual wheelchair propulsion. Experimental studies, however, consistently show low FEF values and recent experimental as well as modelling investigations have conclusively shown that a more tangential pushrim force direction can lead to a decrease and not increase in propulsion efficiency. This study aims at quantifying the contributions of active, inertial and gravitational forces to the normal pushrim component. In order to achieve this goal, an inverse dynamics-based framework is proposed to estimate individual contributions to the pushrim forces using a model of the wheelchair-user system. The results show that the radial pushrim force component arise to a great extent due to purely mechanical effects, including inertial and gravitational forces. These results corroborate previous findings according to which radial pushrim force components are not necessarily a result of inefficient propulsion strategies or hand-rim friction requirements. This study proposes a novel framework to quantify the individual contributions of active, inertial and gravitational forces to pushrim forces during wheelchair propulsion.
机译:切向力与总推力之比,即所谓的分数有效力(FEF),已被用于评估轮椅推进效率,其依据是只有力的切向分量会影响实际的轮椅推进力。但是,实验研究始终显示出较低的FEF值,并且最近的实验以及模型研究已得出结论,更切向的推力方向可能导致推进效率降低而不是提高。本研究旨在量化主动力,惯性力和重力对正常推力轮缘分量的贡献。为了实现这一目标,提出了一种基于逆动力学的框架,以使用轮椅使用者系统的模型来估计对后缘力的个体贡献。结果表明,径向推力分量在很大程度上是由于纯粹的机械作用引起的,包括惯性力和重力。这些结果证实了先前的发现,即径向推力分量不一定是无效推进策略或手轮缘摩擦要求的结果。这项研究提出了一个新颖的框架,可以量化轮椅推进过程中主动力,惯性力和重力对推力的贡献。

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