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Whole-body End-Effector Pose Tracking

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arxiv 2409.16048 v2 pith:GT7VIGKK submitted 2024-09-24 cs.RO cs.AIcs.LGcs.SYeess.SY

classification cs.ROcs.AIcs.LGcs.SYeess.SY
keywords end-effectorrobottrackingposeworkspaceachievesexistinglarge
verification ladder T0 review T1 audit T2 compute T3 formal
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Combining manipulation with the mobility of legged robots is essential for a wide range of robotic applications. However, integrating an arm with a mobile base significantly increases the system's complexity, making precise end-effector control challenging. Existing model-based approaches are often constrained by their modeling assumptions, leading to limited robustness. Meanwhile, recent Reinforcement Learning (RL) implementations restrict the arm's workspace to be in front of the robot or track only the position to obtain decent tracking accuracy. In this work, we address these limitations by introducing a whole-body RL formulation for end-effector pose tracking in a large workspace on rough, unstructured terrains. Our proposed method involves a terrain-aware sampling strategy for the robot's initial configuration and end-effector pose commands, as well as a game-based curriculum to extend the robot's operating range. We validate our approach on the ANYmal quadrupedal robot with a six DoF robotic arm. Through our experiments, we show that the learned controller achieves precise command tracking over a large workspace and adapts across varying terrains such as stairs and slopes. On deployment, it achieves a pose-tracking error of 2.64 cm and 3.64 degrees, outperforming existing competitive baselines.

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Cited by 2 Pith papers

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

  1. PAKE: Learning Whole-Body Loco-Manipulation with Partial Kinematic Embeddings

    cs.RO 2026-07 conditional novelty 6.0 of 10

    A hierarchical controller using a kinematic normalizing flow for partial inverse-kinematics redundancy plus low-level imitation yields 4.5 cm / 0.14 rad end-effector tracking while walking on a real quadruped-arm platform.

  2. Representative Volume Element: Existence and Extent in Cracked Heterogeneous Medium

    cs.CE 2025-08 unverdicted novelty 5.0 of 10

    Modified periodic boundary conditions that add strain periodicity to displacement periodicity are claimed to reduce mesh and size sensitivity in cracked-composite RVE simulations, tested on 1,200 samples.

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