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Formation mechanism of a basin of attraction for passive dynamic walking induced by intrinsic hyperbolicity

机译:内在双曲线诱发被动动态行走的吸引盆形成机理

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摘要

Passive dynamic walking is a useful model for investigating the mechanical functions of the body that produce energy-efficient walking. The basin of attraction is very small and thin, and it has a fractal-like shape; this explains the difficulty in producing stable passive dynamic walking. The underlying mechanism that produces these geometric characteristics was not known. In this paper, we consider this from the viewpoint of dynamical systems theory, and we use the simplest walking model to clarify the mechanism that forms the basin of attraction for passive dynamic walking. We show that the intrinsic saddle-type hyperbolicity of the upright equilibrium point in the governing dynamics plays an important role in the geometrical characteristics of the basin of attraction; this contributes to our understanding of the stability mechanism of bipedal walking.
机译:被动动态步行是研究人体产生节能步行的机械功能的有用模型。吸引力的盆地非常小而薄,呈分形状。这解释了产生稳定的被动动态步行的困难。产生这些几何特征的潜在机制尚不清楚。在本文中,我们从动力学系统理论的角度考虑了这一点,并使用最简单的步行模型来阐明形成被动动态步行吸引力盆地的机制。我们表明,在控制动力学中直立平衡点的内在鞍型双曲性在吸引盆地的几何特征中起着重要作用。这有助于我们了解双足步行的稳定性机制。

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