Adaptive MPC-based quadrupedal robot control under periodic disturbances

Fuente: arXiv
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Autori principali: Pestova, Elizaveta, Osokin, Ilya, Belov, Danil, Osinenko, Pavel
Natura: Preprint
Pubblicazione: 2025
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author Pestova, Elizaveta
Osokin, Ilya
Belov, Danil
Osinenko, Pavel
author_facet Pestova, Elizaveta
Osokin, Ilya
Belov, Danil
Osinenko, Pavel
contents Recent advancements in adaptive control for reference trajectory tracking enable quadrupedal robots to perform locomotion tasks under challenging conditions. There are methods enabling the estimation of the external disturbances in terms of forces and torques. However, a specific case of disturbances that are periodic was not explicitly tackled in application to quadrupeds. This work is devoted to the estimation of the periodic disturbances with a lightweight regressor using simplified robot dynamics and extracting the disturbance properties in terms of the magnitude and frequency. Experimental evidence suggests performance improvement over the baseline static disturbance compensation. All source files, including simulation setups, code, and calculation scripts, are available on GitHub at https://github.com/aidagroup/quad-periodic-mpc.
format Preprint
id arxiv_https___arxiv_org_abs_2505_12361
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Adaptive MPC-based quadrupedal robot control under periodic disturbances
Pestova, Elizaveta
Osokin, Ilya
Belov, Danil
Osinenko, Pavel
Robotics
Artificial Intelligence
Systems and Control
Recent advancements in adaptive control for reference trajectory tracking enable quadrupedal robots to perform locomotion tasks under challenging conditions. There are methods enabling the estimation of the external disturbances in terms of forces and torques. However, a specific case of disturbances that are periodic was not explicitly tackled in application to quadrupeds. This work is devoted to the estimation of the periodic disturbances with a lightweight regressor using simplified robot dynamics and extracting the disturbance properties in terms of the magnitude and frequency. Experimental evidence suggests performance improvement over the baseline static disturbance compensation. All source files, including simulation setups, code, and calculation scripts, are available on GitHub at https://github.com/aidagroup/quad-periodic-mpc.
title Adaptive MPC-based quadrupedal robot control under periodic disturbances
topic Robotics
Artificial Intelligence
Systems and Control
url https://arxiv.org/abs/2505.12361