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A method of providing accurate velocity feedback of performance on an instrumented kayak ergometer

机译:一种在仪表皮划艇测力计上提供准确的速度反馈的方法

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摘要

On a kayak ergometer, an accurate simulation of the athlete-paddle-kayak system kinematics is essential for analysing the relationship between technique and performance. The purpose of this study was to establish a strong relationship between performances on flatwater and performances on an ergometer by means of propulsive force measurement and drag models. Two trials were performed by 12 kayakers in which they were first timed over 250 m of flatwater kayaking (the reference test) and were then asked to perform a trial of the same duration on the ergometer with the same perceived physical exertion. Three techniques for measuring propulsive force and three drag models generated nine combinations, which were all evaluated for their ability to estimate kayak velocity. For each combination, the distance covered by the athlete on the ergometer was simulated. A kayakers’ ergometer ranking was based on the average velocity in the ergometer trial. Both distance and ranking were compared to the on-water results. The simulation with the best combination of force measurement and drag model gave an accurate estimate of distance (253 ± 10.5 vs. 250 m) and ranking compared to the reference test.
机译:在皮划艇测功机上,运动员-桨-皮划艇系统运动学的精确模拟对于分析技术与性能之间的关系至关重要。这项研究的目的是通过推进力测量和阻力模型来建立平水性能和测功机性能之间的牢固关系。 12名皮划艇运动员进行了两次试验,首先对他们进行250 m的静水皮划艇计时(参考试验),然后要求他们在测力计上进行相同持续时间的试验,并保持相同的体力消耗。三种测量推进力的技术和三个阻力模型产生了九种组合,对它们的皮划艇速度估计能力进行了评估。对于每种组合,都模拟了测力计上运动员所覆盖的距离。皮划艇运动员的测功机排名基于测功机试验中的平均速度。距离和排名都与水上结果进行了比较。与参考测试相比,将力测量和阻力模型最佳组合进行的仿真可以准确估算出距离(253±10.5对250 m)和等级。

著录项

  • 来源
    《Sports Engineering 》 |2009年第2期| 57-65| 共9页
  • 作者单位

    Department of Kinesiology, University of Montreal, Research Centre of Sainte-Justine Hospital, Montreal, Canada;

    Laboratory of Solid Mechanics, CNRS UMR 6610, University of Poitiers, Poitiers, France;

    Laboratory of Solid Mechanics, CNRS UMR 6610, University of Poitiers, Poitiers, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Drag models; Propulsive force; Simulation;

    机译:阻力模型;推进力;模拟;

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