Motion Modification Method of Musculoskeletal Humanoids by Human Teaching Using Muscle-Based Compensation Control

Fuente: arXiv
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Bibliographic Details
Main Authors: Kawaharazuka, Kento, Koga, Yuya, Nishiura, Manabu, Omura, Yusuke, Asano, Yuki, Okada, Kei, Kawasaki, Koji, Inaba, Masayuki
Format: Preprint
Published: 2024
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author Kawaharazuka, Kento
Koga, Yuya
Nishiura, Manabu
Omura, Yusuke
Asano, Yuki
Okada, Kei
Kawasaki, Koji
Inaba, Masayuki
author_facet Kawaharazuka, Kento
Koga, Yuya
Nishiura, Manabu
Omura, Yusuke
Asano, Yuki
Okada, Kei
Kawasaki, Koji
Inaba, Masayuki
contents While musculoskeletal humanoids have the advantages of various biomimetic structures, it is difficult to accurately control the body, which is challenging to model. Although various learning-based control methods have been developed so far, they cannot completely absorb model errors, and recognition errors are also bound to occur. In this paper, we describe a method to modify the movement of the musculoskeletal humanoid by applying external force during the movement, taking advantage of its flexible body. Considering the fact that the joint angles cannot be measured, and that the external force greatly affects the nonlinear elastic element and not the actuator, the modified motion is reproduced by the proposed muscle-based compensation control. This method is applied to a musculoskeletal humanoid, Musashi, and its effectiveness is confirmed.
format Preprint
id arxiv_https___arxiv_org_abs_2411_06323
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Motion Modification Method of Musculoskeletal Humanoids by Human Teaching Using Muscle-Based Compensation Control
Kawaharazuka, Kento
Koga, Yuya
Nishiura, Manabu
Omura, Yusuke
Asano, Yuki
Okada, Kei
Kawasaki, Koji
Inaba, Masayuki
Robotics
While musculoskeletal humanoids have the advantages of various biomimetic structures, it is difficult to accurately control the body, which is challenging to model. Although various learning-based control methods have been developed so far, they cannot completely absorb model errors, and recognition errors are also bound to occur. In this paper, we describe a method to modify the movement of the musculoskeletal humanoid by applying external force during the movement, taking advantage of its flexible body. Considering the fact that the joint angles cannot be measured, and that the external force greatly affects the nonlinear elastic element and not the actuator, the modified motion is reproduced by the proposed muscle-based compensation control. This method is applied to a musculoskeletal humanoid, Musashi, and its effectiveness is confirmed.
title Motion Modification Method of Musculoskeletal Humanoids by Human Teaching Using Muscle-Based Compensation Control
topic Robotics
url https://arxiv.org/abs/2411.06323