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A new dynamic model of the manual wheelchair for straight and curvilinear propulsion

机译:直线和曲线推进的新型手动轮椅动力学模型

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Due to their mechanical design, current wheelchair ergometers cannot simulate the behaviour of a wheelchair propelled on curvilinear paths. This is because they implement a dynamic model of the Wheelchair-user system propelled on Straight Line only (WSL). In this paper, we present a new dynamic model of the Wheelchair-user propelled on Straight and Curvilinear paths (WSC), along with a characterization method based on measurements recorded on the field. Other than measured geometrical constants and kinetic/kinematic data from instrumented wheels, no information about the dynamic parameters such as the system's mass and its moment of inertia are necessary. The accuracy of the new WSC model was compared with the WSL model. To this end, ten subjects propelled an instrumented wheelchair following straight and curvilinear patterns. The recorded kinetics were fed to both models, and their estimated kinematics were compared to the recorded ones. For the curvilinear patterns, the RMS relative error between the estimated and measured rear wheels velocities over a complete push cycle are lower for the WSC model than for the WSL model. Outward wheel: 7.98% (WSC) vs 12.98% (WSL). Inward wheel: 10.76% (WSC) vs 20.73% (WSL).
机译:由于其机械设计,当前的轮椅测力计无法模拟在曲线路径上推进的轮椅的行为。这是因为它们实现了仅在直线(WSL)上推进的轮椅用户系统的动态模型。在本文中,我们介绍了在直线和曲线路径(WSC)上推进的轮椅使用者的新动力学模型,以及基于现场记录的测量结果的表征方法。除了从车轮测量得到的几何常数和动力学/运动学数据外,不需要有关动态参数(例如系统的质量及其惯性矩)的信息。将新的WSC模型的准确性与WSL模型进行了比较。为此,十名受试者按照直线和曲线模式推进了器械轮椅。将记录的动力学输入两个模型,并将其估计的运动学与记录的动力学进行比较。对于曲线模式,WSC模型在整个推动周期内估算和测量的后轮速度之间的RMS相对误差低于WSL模型。外向轮:7.98%(WSC)和12.98%(WSL)。内轮:10.76%(WSC)对20.73%(WSL)。

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