Kautz S A, Hull M L
Rehabilitation Research and Development Center, Department of Veterans Affairs Medical Center, Palo Alto, CA 94303-1200, USA.
J Biomech. 1995 Nov;28(11):1391-401. doi: 10.1016/0021-9290(95)00007-5.
The goals of the work reported by this article are two-fold. The first is to develop a dynamic optimization framework for analysis of equipment setup problems in endurance cycling. The second is to illustrate the application of the approach by determining an optimal chainring shape. To achieve these goals, a mathematical model of the pedaling motion for given trajectories of the net joint moments and the rate of change of the chainring radius was derived, and chainring optimization was posed as an optimal control problem. The cost functional produced a chainring shape that reduced the cost of endurance cycling at 250 W and 90 rpm, apparently by taking advantage of mechanical interactions that arise as a natural consequence of the movement. However, the predicted joint moments required larger peak values during phases of significantly increased joint velocity. Thus, the 'optimal' performance predicted by the cost functional appears opposed to expectations based on muscle mechanics and illustrates the need for further analysis of endurance cycling with a physiologically based cost functional.
本文所报道工作的目标有两个方面。第一个目标是开发一个动态优化框架,用于分析耐力自行车运动中的设备设置问题。第二个目标是通过确定最佳的链轮形状来说明该方法的应用。为实现这些目标,针对给定的净关节力矩轨迹和链轮半径变化率,推导了踏板运动的数学模型,并将链轮优化设定为一个最优控制问题。成本函数生成了一种链轮形状,该形状在250瓦功率和90转/分钟的情况下降低了耐力自行车运动的成本,显然是通过利用运动自然产生的机械相互作用来实现的。然而,预测的关节力矩在关节速度显著增加的阶段需要更大的峰值。因此,成本函数预测的“最佳”性能似乎与基于肌肉力学的预期相悖,这表明需要使用基于生理学的成本函数对耐力自行车运动进行进一步分析。