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Whole-Body Dynamic Throwing with Legged Manipulators

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

Throwing with a legged robot involves precise coordination of object manipulation and locomotion - crucial for advanced real-world interactions. Most research focuses on either manipulation or locomotion, with minimal exploration of tasks requiring both. This work investigates leveraging all available motors (full-body) over arm-only throwing in legged manipulators. We frame the task as a deep reinforcement learning (RL) objective, optimising throwing accuracy towards any user-commanded target destination and the robot's stability. Evaluations on a humanoid and an armed quadruped in simulation show that full-body throwing improves range, accuracy, and stability by exploiting body momentum, counter-balancing, and full-body dynamics. We introduce an optimised adaptive curriculum to balance throwing accuracy and stability, along with a tailored RL environment setup for efficient learning in sparse-reward conditions. Unlike prior work, our approach generalises to targets in 3D space. We transfer our learned controllers from simulation to a real humanoid platform.

fields

cs.RO 1

years

2025 1

verdicts

CONDITIONAL 1

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  • Prior Reinforce: Goal-Conditioned Dynamic Manipulation with Limited Trials cs.RO · 2025-05-28 · conditional · none · ref 23 · internal anchor

    Prior Reinforce adapts a few demonstration motions to new goals in dynamic manipulation by learning a diffusion motion prior and refining a low-dimensional condition via Bayesian optimization, reaching new goals in under 10 real trials.