A Null Space Compliance Approach for Maintaining Safety and Tracking Performance in Human-Robot Interactions

Fuente: arXiv
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Main Authors: Yang, Zi-Qi, Wang, Miaomiao, Kermani, Mehrdad R.
Format: Preprint
Published: 2025
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author Yang, Zi-Qi
Wang, Miaomiao
Kermani, Mehrdad R.
author_facet Yang, Zi-Qi
Wang, Miaomiao
Kermani, Mehrdad R.
contents In recent years, the focus on developing robot manipulators has shifted towards prioritizing safety in Human-Robot Interaction (HRI). Impedance control is a typical approach for interaction control in collaboration tasks. However, such a control approach has two main limitations: 1) the end-effector (EE)'s limited compliance to adapt to unknown physical interactions, and 2) inability of the robot body to compliantly adapt to unknown physical interactions. In this work, we present an approach to address these drawbacks. We introduce a modified Cartesian impedance control method combined with a Dynamical System (DS)-based motion generator, aimed at enhancing the interaction capability of the EE without compromising main task tracking performance. This approach enables human coworkers to interact with the EE on-the-fly, e.g. tool changeover, after which the robot compliantly resumes its task. Additionally, combining with a new null space impedance control method enables the robot body to exhibit compliant behaviour in response to interactions, avoiding serious injuries from accidental contact while mitigating the impact on main task tracking performance. Finally, we prove the passivity of the system and validate the proposed approach through comprehensive comparative experiments on a 7 Degree-of-Freedom (DOF) KUKA LWR IV+ robot.
format Preprint
id arxiv_https___arxiv_org_abs_2502_02443
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Null Space Compliance Approach for Maintaining Safety and Tracking Performance in Human-Robot Interactions
Yang, Zi-Qi
Wang, Miaomiao
Kermani, Mehrdad R.
Robotics
Systems and Control
In recent years, the focus on developing robot manipulators has shifted towards prioritizing safety in Human-Robot Interaction (HRI). Impedance control is a typical approach for interaction control in collaboration tasks. However, such a control approach has two main limitations: 1) the end-effector (EE)'s limited compliance to adapt to unknown physical interactions, and 2) inability of the robot body to compliantly adapt to unknown physical interactions. In this work, we present an approach to address these drawbacks. We introduce a modified Cartesian impedance control method combined with a Dynamical System (DS)-based motion generator, aimed at enhancing the interaction capability of the EE without compromising main task tracking performance. This approach enables human coworkers to interact with the EE on-the-fly, e.g. tool changeover, after which the robot compliantly resumes its task. Additionally, combining with a new null space impedance control method enables the robot body to exhibit compliant behaviour in response to interactions, avoiding serious injuries from accidental contact while mitigating the impact on main task tracking performance. Finally, we prove the passivity of the system and validate the proposed approach through comprehensive comparative experiments on a 7 Degree-of-Freedom (DOF) KUKA LWR IV+ robot.
title A Null Space Compliance Approach for Maintaining Safety and Tracking Performance in Human-Robot Interactions
topic Robotics
Systems and Control
url https://arxiv.org/abs/2502.02443