← Search

Stéphane Caron

10 accepted papers

2024

Linear-time Differential Inverse Kinematics: an Augmented Lagrangian Perspective

RSS 2024poster

For decades, inverse kinematics (IK) was an intense and active research area in robotics. Beyond analytical solutions limited to a restricted range of robotic systems and applications, differential inverse kinematics has emerged as a generic class of methods, able to cope with a wider variety of rob…

Cited by 1SourcePDFScholar
2021

3D biped locomotion control including seamless transition between walking and running via 3D ZMP manipulation

ICRA 2021poster

A novel control scheme for biped robots to manipulate the ZMP three-dimensionally apart from the actual ground profile is presented. It is shown that the linear inverted-pendulum-like dynamics with this scheme can represent a wider class of movements including variation of the body height. Moreover,…

Cited by 26SourceScholar
2021

Humanoid Control Under Interchangeable Fixed and Sliding Unilateral Contacts

RA-L 2021

In this letter, we propose a whole-body control strategy for humanoid robots in multi-contact settings that enables switching between fixed and sliding contacts under active balance. We compute, in real-time, a safe center-of-mass position and wrench distribution of the contact points based on the C

Cited by 10SourceScholar
2020

Balance of Humanoid Robots in a Mix of Fixed and Sliding Multi-Contact Scenarios

ICRA 2020poster

This study deals with the balance of humanoid or multi-legged robots in a multi-contact setting where a chosen subset of contacts is undergoing desired sliding-task motions. One method to keep balance is to hold the center-of-mass (CoM) within an admissible convex area. This area is calculated based…

Cited by 14SourceScholar
2019

Stair Climbing Stabilization of the HRP-4 Humanoid Robot using Whole-body Admittance Control

ICRA 2019poster

We consider dynamic stair climbing with the HRP-4 humanoid robot as part of an Airbus manufacturing use-case demonstrator. We share experimental knowledge gathered so as to achieve this task, which HRP-4 had never been challenged to before. In particular, we extend walking stabilization based on lin…

Cited by 172SourcecodeScholar
2018

Balance Control Using Both ZMP and COM Height Variations: A Convex Boundedness Approach

ICRA 2018poster

Developments for 3D control of the center of mass (CoM) of biped robots are currently located in two local minima: on the one hand, methods that allow CoM height variations but only work in the 2D sagittal plane; on the other hand, nonconvex direct transcriptions of centroidal dynamics that are deli…

Cited by 24SourceScholar
2017

Dynamic walking over rough terrains by nonlinear predictive control of the floating-base inverted pendulum

IROS 2017poster

We present a real-time pattern generator for dynamic walking over rough terrains. Our method automatically finds step durations, a critical issue over rough terrains where they depend on terrain topology. To achieve this level of generality, we consider a Floating-base Inverted Pendulum (FIP) model…

Cited by 44SourceScholar
2015

Stability of surface contacts for humanoid robots: Closed-form formulae of the Contact Wrench Cone for rectangular support areas

ICRA 2015poster

Humanoids locomote by making and breaking contacts with their environment. Thus, a crucial question for them is to anticipate whether a contact will hold or break under effort. For rigid surface contacts, existing methods usually consider several point-contact forces, which has some drawbacks due to…

Cited by 163SourceScholar