Simultaneous State Estimation and Contact Detection for Legged Robots by Multiple-Model Kalman Filtering

Fuente: arXiv
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Autori principali: Menner, Marcel, Berntorp, Karl
Natura: Preprint
Pubblicazione: 2024
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author Menner, Marcel
Berntorp, Karl
author_facet Menner, Marcel
Berntorp, Karl
contents This paper proposes an algorithm for combined contact detection and state estimation for legged robots. The proposed algorithm models the robot's movement as a switched system, in which different modes relate to different feet being in contact with the ground. The key element in the proposed algorithm is an interacting multiple-model Kalman filter, which identifies the currently-active mode defining contacts, while estimating the state. The rationale for the proposed estimation framework is that contacts (and contact forces) impact the robot's state and vice versa. This paper presents validation studies with a quadruped using (i) the high-fidelity simulator Gazebo for a comparison with ground truth values and a baseline estimator, and (ii) hardware experiments with the Unitree A1 robot. The simulation study shows that the proposed algorithm outperforms the baseline estimator, which does not simultaneous detect contacts. The hardware experiments showcase the applicability of the proposed algorithm and highlights the ability to detect contacts.
format Preprint
id arxiv_https___arxiv_org_abs_2404_03444
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Simultaneous State Estimation and Contact Detection for Legged Robots by Multiple-Model Kalman Filtering
Menner, Marcel
Berntorp, Karl
Robotics
Systems and Control
This paper proposes an algorithm for combined contact detection and state estimation for legged robots. The proposed algorithm models the robot's movement as a switched system, in which different modes relate to different feet being in contact with the ground. The key element in the proposed algorithm is an interacting multiple-model Kalman filter, which identifies the currently-active mode defining contacts, while estimating the state. The rationale for the proposed estimation framework is that contacts (and contact forces) impact the robot's state and vice versa. This paper presents validation studies with a quadruped using (i) the high-fidelity simulator Gazebo for a comparison with ground truth values and a baseline estimator, and (ii) hardware experiments with the Unitree A1 robot. The simulation study shows that the proposed algorithm outperforms the baseline estimator, which does not simultaneous detect contacts. The hardware experiments showcase the applicability of the proposed algorithm and highlights the ability to detect contacts.
title Simultaneous State Estimation and Contact Detection for Legged Robots by Multiple-Model Kalman Filtering
topic Robotics
Systems and Control
url https://arxiv.org/abs/2404.03444