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Steve Tonneau

18 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

A Versatile Co-Design Approach For Dynamic Legged Robots

IROS 2022poster

We present a versatile framework for the computational co-design of legged robots and dynamic maneuvers. Current state-of-the-art approaches are typically based on random sampling or concurrent optimization. We propose a novel bilevel optimization approach that exploits the derivatives of the motion…

Cited by 22SourceScholar
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

Learning to Guide Online Multi-Contact Receding Horizon Planning

IROS 2022poster

In Receding Horizon Planning (RHP), it is critical that the motion being executed facilitates the completion of the task, e.g. building momentum to overcome large obstacles. This requires a value function to inform the desirability of robot states. However, given the complex dynamics, value function…

Cited by 7SourceScholar
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

Learning to steer a locomotion contact planner

ICRA 2021poster

The combinatorics inherent to the issue of planning legged locomotion can be addressed by decomposing the problem: first, select a guide path abstracting the contacts with a heuristic model; then compute the contact sequence to balance the robot gait along the guide path. While several models have b…

Cited by 4SourceScholar
2021

Whole Body Model Predictive Control with a Memory of Motion: Experiments on a Torque-Controlled Talos

ICRA 2021poster

This paper presents the first successful experiment implementing whole-body model predictive control with state feedback on a torque-control humanoid robot. We demonstrate that our control scheme is able to do whole-body target tracking, control the balance in front of strong external perturbations…

Cited by 63SourceScholar
2020

Automatic Gait Pattern Selection for Legged Robots

IROS 2020poster

An important issue when synthesizing legged locomotion plans is the combinatorial complexity that arises from gait pattern selection. Though it can be defined manually, the gait pattern plays an important role in the feasibility and optimality of a motion with respect to a task. Replacing human intu…

Cited by 14SourceScholar
2020

SL1M: Sparse L1-norm Minimization for contact planning on uneven terrain

ICRA 2020poster

One of the main challenges of planning legged locomotion in complex environments is the combinatorial contact selection problem. Recent contributions propose to use integer variables to represent which contact surface is selected, and then to rely on modern mixed-integer (MI) optimization solvers to…

Cited by 43SourceScholar
2018

CROC: Convex Resolution of Centroidal Dynamics Trajectories to Provide a Feasibility Criterion for the Multi Contact Planning Problem

IROS 2018poster

We tackle the transition feasibility problem, that is the issue of determining whether there exists a feasible motion connecting two configurations of a legged robot. To achieve this we introduce CROC, a novel method for computing centroidal dynamics trajectories in multi-contact planning contexts.…

Cited by 58SourceScholar
2017

A kinodynamic steering-method for legged multi-contact locomotion

IROS 2017poster

We present a novel method for synthesizing collision-free, dynamic locomotion behaviors for legged robots, including jumping, going down a very steep slope, or recovering from a push using the arms of the robot. The approach is automatic and generic: non-gaited motions, comprising arbitrary contact…

Cited by 29SourceScholar
2016

A versatile and efficient pattern generator for generalized legged locomotion

ICRA 2016

This paper presents a generic and efficient approach to generate dynamically consistent motions for under-actuated systems like humanoid or quadruped robots. The main contribution is a walking pattern generator, able to compute a stable trajectory of the center of mass of the robot along with the an

Cited by 143SourceScholar
2016

HPP: A new software for constrained motion planning

IROS 2016poster

We present HPP, a software designed for complex classes of motion planning problems, such as navigation among movable objects, manipulation, contact-rich multiped locomotion, or elastic rods in cluttered environments. HPP is an open-source answer to the lack of a standard framework for these importa…

Cited by 78SourceScholar