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When to Waddle: A Comparative Study of Bipedal Torso-Stabilization on Low-Friction Surfaces

arXiv · AI, language, vision and robotics · article · Sep 18, 2026 · UTC

Low-friction surfaces challenge bipedal locomotion by limiting the contact forces available during stepping. Inspired by penguin waddling, we investigate how lateral torso motion and center of mass (COM) placement affect locomotion as surface friction changes. Using a five-actuator biped, we compare an upright-gait strategy with a penguin-inspired torso-over-stance-leg strategy across multiple COM placements in simulation and hardware. In the 3-D simulator MuJoCo, we sweep through sinusoidal leg and hip actuation parameters across four friction coefficients mu = 0.1, 0.3, 0.5, 0.7. In simulati

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Evidence & attribution

First collected: 2026-09-23T14:01:59.594Z. This is not the publication date.