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Jean-Pierre Sleiman

6 accepted papers

2022

A Collision-Free MPC for Whole-Body Dynamic Locomotion and Manipulation

ICRA 2022poster

In this paper, we present a real-time whole-body planner for collision-free legged mobile manipulation. We enforce both self-collision and environment-collision avoidance as soft constraints within a Model Predictive Control (MPC) scheme that solves a multi-contact optimal control problem. By penali…

Cited by 67SourceScholar
2021

A Unified MPC Framework for Whole-Body Dynamic Locomotion and Manipulation

RA-L 2021

In this letter, we propose a whole-body planning framework that unifies dynamic locomotion and manipulation tasks by formulating a single multi-contact optimal control problem. We model the hybrid nature of a generic multi-limbed mobile manipulator as a switched system, and introduce a set of constr

Cited by 257SourceScholar
2021

Constraint Handling in Continuous-Time DDP-Based Model Predictive Control

ICRA 2021poster

The Sequential Linear Quadratic (SLQ) algorithm is a continuous-time version of the well-known Differential Dynamic Programming (DDP) technique with a Gauss-Newton Hessian approximation. This family of methods has gained popularity in the robotics community due to its efficiency in solving complex t…

Cited by 30SourceScholar
2021

Generating Continuous Motion and Force Plans in Real-Time for Legged Mobile Manipulation

ICRA 2021poster

Manipulators can be added to legged robots, allowing them to interact with and change their environment. Legged mobile manipulation planners must consider how contact forces generated by these manipulators affect the system. Current planning strategies either treat these forces as immutable during p…

Cited by 24SourceScholar
2021

Passivity-based control for haptic teleoperation of a legged manipulator in presence of time-delays

IROS 2021poster

When dealing with the haptic teleoperation of multi-limbed mobile manipulators, the problem of mitigating the destabilizing effects arising from the communication link between the haptic device and the remote robot has not been properly addressed. In this work, we propose a passive control architect…

Cited by 19SourceScholar
2019

Contact-Implicit Trajectory Optimization for Dynamic Object Manipulation

IROS 2019poster

We present a reformulation of a contact-implicit optimization (CIO) approach that computes optimal trajectories for rigid-body systems in contact-rich settings. A hard-contact model is assumed, and the unilateral constraints are imposed in the form of complementarity conditions. Newton's impact law…

Cited by 49SourceScholar