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Carlos Sagüés

5 accepted papers

2023

Double-Integrator Multirobot Control With Uncoupled Dynamics for Transport of Deformable Objects

RA-L 2023

We present a formation controller for a team of mobile robots, modelled with double-integrator dynamics, to manipulate deformable objects grasped around their contour. The manipulation task is defined as reaching a target configuration consisting of a desired shape, scale, position and orientation o

Cited by 7SourceScholar
2023

LEMURS: Learning Distributed Multi-Robot Interactions

ICRA 2023poster

This paper presents LEMURS, an algorithm for learning scalable multi-robot control policies from cooperative task demonstrations. We propose a port-Hamiltonian description of the multi-robot system to exploit universal physical constraints in interconnected systems and achieve closed-loop stability.…

Cited by 11SourcecodeScholar
2022

Multirobot control with double-integrator dynamics and control barrier functions for deformable object transport

ICRA 2022poster

In this paper, we propose a formation control system for deforming and transporting simultaneously a de-formable object with a team of robots, modeled with double-integrator dynamics. The goal is to reach a target configuration, defined as a combination of shape, scale, orientation and position of t…

Cited by 10SourceScholar
2017

Optimal path planning and coverage control for multi-robot persistent coverage in environments with obstacles

ICRA 2017poster

Persistent coverage aims to maintain a certain coverage level over time in an environment where such level deteriorates. This level can be associated to temperature, dust or sensor information. We propose an algorithmic solution in which each robot locally finds the best paths and coverage actions t…

Cited by 54SourceScholar
2016

Distributed formation control of non-holonomic robots without a global reference frame

ICRA 2016

In this paper we consider the problem of controlling a team of non-holonomic robots to reach a desired formation. The formation is described in terms of the desired relative positions and orientations the robots need to keep with respect to each other, and it is assumed that the robots do not have a

Cited by 12SourceScholar