← Search

Robin Passama

7 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
2018

Towards Real-Time Physical Human-Robot Interaction Using Skeleton Information and Hand Gestures

IROS 2018poster

For successful physical human-robot interaction, the capability of a robot to understand its environment is imperative. More importantly, the robot should extract from the human operator as much information as possible. A reliable 3D skeleton extraction is essential for a robot to predict the intent…

Cited by 75SourceScholar
2017

Motion Discontinuity-Robust Controller for Steerable Mobile Robots

RA-L 2017

Steerable wheeled mobile robots are able to perform arbitrary three-dimensional (3-D) planar trajectories, only after initializing the steer joint vector to the proper values. These robots employ fully steerable conventional wheels. Hence, they have higher load carrying capacity than their holonomic

Cited by 22SourceScholar
2017

Tentacle-based moving obstacle avoidance for omnidirectional robots with visibility constraints

IROS 2017poster

This paper presents a tentacle-based obstacle avoidance scheme for omnidirectional mobile robots that must satisfy visibility constraints during navigation. The navigation task consists of driving the robot towards a visual target in the presence of environment (static or moving) obstacles. The targ…

Cited by 17SourceScholar
2016

An ISO10218-compliant adaptive damping controller for safe physical human-robot interaction

ICRA 2016

In human-robot interaction, the robot must behave safely, especially when an operator is present in its workspace. Even higher safety levels must be attained when physical contact occurs between the two. To this end, standards such as the ISO10218 define the requirements for a robot to be considered

Cited by 30SourceScholar
2016

Kinematic modeling and singularity treatment of steerable wheeled mobile robots with joint acceleration limits

ICRA 2016

Non-holonomic omnidirectional mobile robots have higher load carrying capacity than their holonomic counterparts. Once the steer joint configuration is initialized, they can perform arbitrarily complex three-dimensional trajectories in the plane of motion and, as such, are more suitable for industri

Cited by 15SourceScholar
2015

Atoms based control of mobile robots with Hardware-In-the-Loop validation

IROS 2015poster

Mobile robots are nowadays used in a wide variety of missions especially for exploring environments and allowing scientists who study these environments to gather data about them. However the monolithic design of control laws is often a hindrance to adapting control solutions from a robotic applicat…

Cited by 3SourceScholar