Effects of Incremental Changes to Frame Mass on Manual Wheelchair Propulsion Cost.

Jacob Misch, Stephen Sprigle
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Abstract

The objective of this study was to assess the effects of small, incremental additions to wheelchair frame mass (0 kg, +2 kg, and +4 kg) on the mechanical propulsion characteristics in both straight and curvilinear maneuvers. A robotic propulsion system was used to propel a manual wheelchair over a smooth tiled surface following rectilinear ("Straight") and curvilinear ("Slalom") trajectories. Three unique loading conditions were tested. Propulsion costs and system rolling resistance estimations were empirically collected using the robotic wheelchair tester. Propulsion cost values were equivalent across all loading conditions over the Slalom trajectory. In the Straight trajectory, adding 2 kg on the axle had equivalent propulsion cost to the unloaded configuration. Adding 4 kg on axle was comparable, but not equivalent, to the unloaded configuration with small (≤4.1%) increases in propulsion cost. This study demonstrates that small (0-4 kg) changes to the frame mass have no meaningful impacts on the propulsion characteristics of the manual wheelchair system. Differences in propulsion cost and rolling resistance were detectable but contextually insignificant.

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车架质量的增量变化对手动轮椅推进成本的影响。
本研究的目的是评估轮椅框架质量(0 千克、+2 千克和 +4 千克)的小幅递增对直线和曲线机动中机械推进特性的影响。使用机器人推进系统推动手动轮椅在光滑的瓷砖表面上沿着直线("直线")和曲线("回旋")轨迹行驶。测试了三种独特的加载条件。推进成本和系统滚动阻力估算是使用机器人轮椅测试仪根据经验收集的。在回转轨迹上,所有负载条件下的推进成本值相同。在直线运动轨迹中,在车轴上增加 2 千克的推进成本与空载配置相当。在车轴上增加 4 千克时,推进成本增加较小(≤4.1%),与未加载配置相当,但不等同。这项研究表明,车架质量的微小变化(0-4 千克)不会对手动轮椅系统的推进特性产生有意义的影响。推进成本和滚动阻力的差异是可以检测到的,但在具体情况下并不显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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