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On the Skill of Balancing While Riding a Bicycle

机译:关于骑自行车时的平衡技巧

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摘要

Humans have ridden bicycles for over 200 years, yet there are no continuous measures of how skill differs between novice and expert. To address this knowledge gap, we measured the dynamics of human bicycle riding in 14 subjects, half of whom were skilled and half were novice. Each subject rode an instrumented bicycle on training rollers at speeds ranging from 1 to 7 m/s. Steer angle and rate, steer torque, bicycle speed, and bicycle roll angle and rate were measured and steering power calculated. A force platform beneath the roller assembly measured the net force and moment that the bicycle, rider and rollers exerted on the floor, enabling calculations of the lateral positions of the system centers of mass and pressure. Balance performance was quantified by cross-correlating the lateral positions of the centers of mass and pressure. The results show that all riders exhibited similar balance performance at the slowest speed. However at higher speeds, the skilled riders achieved superior balance performance by employing more rider lean control (quantified by cross-correlating rider lean angle and bicycle roll angle) and less steer control (quantified by cross-correlating steer rate and bicycle roll rate) than did novice riders. Skilled riders also used smaller steering control input with less variation (measured by average positive steering power and standard deviations of steer angle and rate) and less rider lean angle variation (measured by the standard deviation of the rider lean angle) independent of speed. We conclude that the reduction in balance control input by skilled riders is not due to reduced balance demands but rather to more effective use of lean control to guide the center of mass via center of pressure movements.
机译:人类骑自行车已有200多年的历史了,但是对于新手和专家之间的技能差异,并没有持续的衡量标准。为了解决这一知识鸿沟,我们测量了14人的自行车骑行动态,其中一半是熟练的,一半是新手。每个对象都以1到7 m / s的速度骑着有器械的自行车在训练滚筒上。测量转向角和速率,转向转矩,自行车速度以及自行车侧倾角和速率,并计算转向力。滚轮组件下方的测力平​​台测量了自行车,骑手和滚轮施加在地板上的净力和力矩,从而可以计算系统质心和压力中心的横向位置。通过使质心和压力中心的横向位置互相关来量化平衡性能。结果表明,所有骑手以最低的速度表现出相似的平衡性能。但是,在更高的速度下,熟练的骑手通过采用比与骑手倾斜角和自行车侧倾角互相关的更多的骑手倾斜控制(和通过互相关转向率和自行车侧倾率量化的)来实现出色的平衡性能。新手骑手。熟练的骑手还使用了较小的转向控制输入,与速度无关,其变化较小(通过平均正转向功率以及转向角和速度的标准偏差来衡量),并且驾驶员倾斜角变化较小(通过驾驶员倾斜角的标准偏差来衡量)。我们得出的结论是,熟练骑手减少平衡控制输入的原因不是降低平衡要求,而是由于更有效地使用了稀薄控制来通过压力运动中心来引导质心。

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