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André Crosnier

6 accepted papers

2020

Robotic Manipulation Planning for Shaping Deformable Linear Objects WithEnvironmental Contacts

RA-L 2020

Humans use contacts in the environment to modify the shape of deformable objects. Yet, few papers have studied the use of contacts in robotic manipulation. In this letter, we investigate the problem of robotic manipulation of cables with environmental contacts. Instead of avoiding contacts, we propo

Cited by 94SourceScholar
2019

Obstacle Avoidance using a Capacitive Skin for Safe Human-Robot Interaction

IROS 2019poster

The paper describes a control framework using a capacitive skin for advanced and safe human-robot interactions. The skin consists of high density capacitive sensors which are able to detect objects at close distance. We propose a multitask kinematic control scheme which manages at once the control t…

Cited by 22SourceScholar
2018

Dual-Arm Relative Tasks Performance Using Sparse Kinematic Control

IROS 2018poster

To make production lines more flexible, dual-arm robots are good candidates to be deployed in autonomous assembly units. In this paper, we propose a sparse kinematic control strategy, that minimizes the number of joints actuated for a coordinated task between two arms. The control strategy is based…

Cited by 19SourceScholar
2018

Dual-arm robotic manipulation of flexible cables

IROS 2018poster

Deforming a cable to a desired (reachable) shape is a trivial task for a human to do without even knowing the internal dynamics of the cable. This paper proposes a framework for cable shapes manipulation with multiple robot manipulators. The shape is parameterized by a Fourier series. A local deform…

Cited by 161SourceScholar
2018

Inertial Parameters Identification of a Humanoid Robot Hanged to a Fix Force Sensor

ICRA 2018poster

Knowledge of the mass and inertial parameters of a humanoid robot is crucial for the development of model-based controller and motion planning in dynamics situation. Parameters are usually provided from Computer Aided Design (CAD) data and thus inaccurate specially if the robot is modified over time…

Cited by 7SourceScholar
2018

Inverse Kinematics Control Methods for Redundant Snakelike Robot Teleoperation During Minimally Invasive Surgery

RA-L 2018

The real-time teleoperation or telemanipulation of redundant snakelike robots for minimally invasive surgery in a master-slave configuration is a complex problem. There are many possible mappings between a master's standard 6 degrees of freedom (DOF) and a redundant slave robot, typically with n ≫ 6

Cited by 48SourceScholar