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Thomas Corbères

4 accepted papers

2023

Topology-Based MPC for Automatic Footstep Placement and Contact Surface Selection

ICRA 2023poster

State-of-the-art approaches to footstep planning assume reduced-order dynamics when solving the combinatorial problem of selecting contact surfaces in real time. However, in exchange for computational efficiency, these approaches ignore joint torque limits and limb dynamics. In this work, we address…

Cited by 5SourceScholar
2022

Improved Control Scheme for the Solo Quadruped and Experimental Comparison of Model Predictive Controllers

RA-L 2022

This letter presents significant improvements to the nominal control architecture of the open-access Solo-12 quadruped that were done to implement and compare different centroidal Model Predictive Controllers (MPC). This work was motivated by our previous study in which various MPC schemes of increa

Cited by 6SourceScholar
2022

Real-time Footstep Planning and Control of the Solo Quadruped Robot in 3D Environments

IROS 2022poster

Quadruped robots have proved their robustness to cross complex terrain despite little environment knowledge. Yet advanced locomotion controllers are expected to take advantage of exteroceptive information. This paper presents a complete method to plan and control the locomotion of quadruped robots w…

Cited by 20SourceScholar
2021

Comparison of predictive controllers for locomotion and balance recovery of quadruped robots

ICRA 2021poster

As locomotion decisions must be taken by considering the future, most existing quadruped controllers are based on a model predictive controller (MPC) with a reduced model of the dynamics to generate the motion and a whole- body controller to execute it. Yet the simplifying assumptions of the MPC are…

Cited by 19SourceScholar