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Dynamic Walking on Highly Underactuated Point Foot Humanoids: Closing the Loop between HZD and HLIP

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arxiv 2406.13115 v1 pith:ZFLEGQWW submitted 2024-06-19 cs.RO

classification cs.RO
keywords humanoidhybridpointwalkingdynamicsfoothliplocomotion
verification ladder T0 review T1 audit T2 compute T3 formal
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Realizing bipedal locomotion on humanoid robots with point feet is especially challenging due to their highly underactuated nature, high degrees of freedom, and hybrid dynamics resulting from impacts. With the goal of addressing this challenging problem, this paper develops a control framework for realizing dynamic locomotion and implements it on a novel point foot humanoid: ADAM. To this end, we close the loop between Hybrid Zero Dynamics (HZD) and Hybrid linear inverted pendulum (HLIP) based step length regulation. To leverage the full-order hybrid dynamics of the robot, walking gaits are first generated offline by utilizing HZD. These trajectories are stabilized online through the use of a HLIP based regulator. Finally, the planned trajectories are mapped into the full-order system using a task space controller incorporating inverse kinematics. The proposed method is verified through numerical simulations and hardware experiments on the humanoid robot ADAM marking the first humanoid point foot walking. Moreover, we experimentally demonstrate the robustness of the realized walking via the ability to track a desired reference speed, robustness to pushes, and locomotion on uneven terrain.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. AGILOped: Agile Open-Source Humanoid Robot for Research

    cs.RO 2025-09 conditional novelty 6.0 of 10

    A $6,380, 110 cm, 14.5 kg 3D-printed humanoid using off-the-shelf backdrivable actuators demonstrates walking, jumping, fall mitigation, and stand-up, with open-source design files.

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