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公路自行车功率数学模型的验证

Validation of a Mathematical Model for Road Cycling Power.

作者信息

Martin James C, Milliken Douglas L, Cobb John E, McFadden Kevin L, Coggan Andrew R

出版信息

J Appl Biomech. 1998 Aug;14(3):276-291. doi: 10.1123/jab.14.3.276.

Abstract

This investigation sought to determine if cycling power could be accurately modeled. A mathematical model of cycling power was derived, and values for each model parameter were determined. A bicycle-mounted power measurement system was validated by comparison with a laboratory ergometer. Power was measured during road cycling, and the measured values were compared with the values predicted by the model. The measured values for power were highly correlated (R = .97) with, and were not different than, the modeled values. The standard error between the modeled and measured power (2.7 W) was very small. The model was also used to estimate the effects of changes in several model parameters on cycling velocity. Over the range of parameter values evaluated, velocity varied linearly (R > .99). The results demonstrated that cycling power can be accurately predicted by a mathematical model.

摘要

本研究旨在确定骑行功率是否能够被准确建模。推导了骑行功率的数学模型,并确定了每个模型参数的值。通过与实验室测力计进行比较,对自行车安装的功率测量系统进行了验证。在公路骑行过程中测量功率,并将测量值与模型预测值进行比较。功率的测量值与模型值高度相关(R = 0.97),且无差异。模型功率与测量功率之间的标准误差(2.7W)非常小。该模型还用于估计几个模型参数变化对骑行速度的影响。在所评估的参数值范围内,速度呈线性变化(R > 0.99)。结果表明,骑行功率可以通过数学模型准确预测。

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