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Jean-François Tremblay

5 accepted papers

2025

Learning Active Tactile Perception Through Belief-Space Control

ICRA 2025

Robots operating in an open world will encounter novel objects with unknown physical properties, such as mass, friction, or size. These robots will need to sense these properties through interaction prior to performing downstream tasks with the objects. We propose a method that autonomously learns t

Cited by 2SourceScholar
2025

Topological Mapping for Traversability-Aware Long-Range Navigation in Off-Road Terrain

ICRA 2025

Autonomous robots navigating in off-road terrain like forests open new opportunities for automation. While off-road navigation has been studied, existing work often relies on clearly delineated pathways. We present a method allowing for long-range planning, exploration and low-level control in unkno

Cited by 1SourceScholar
2022

Finger-STS: Combined Proximity and Tactile Sensing for Robotic Manipulation

RA-L 2022

This paper introduces and develops novel touch sensing technologies that enable robots to better sense and react to to intermittent contact interactions. We present Finger-STS, a robotic finger embodiment of the See-Through-your-Skin (STS) sensor that can capture 1) an “in the hand” visual perspecti

Cited by 33SourceScholar
2021

Multimodal dynamics modeling for off-road autonomous vehicles

ICRA 2021poster

Dynamics modeling in outdoor and unstructured environments is difficult because different elements in the environment interact with the robot in ways that can be hard to predict. Leveraging multiple sensors to perceive maximal information about the robot’s environment is thus crucial when building a…

Cited by 17SourceScholar
2020

Vision-Based Goal-Conditioned Policies for Underwater Navigation in the Presence of Obstacles

RSS 2020poster

We present Nav2Goal, a data-efficient and end-to-end learning method for goal-conditioned visual navigation. Our technique is used to train a navigation policy that enables a robot to navigate close to sparse geographic waypoints provided by a user without any prior map, all while avoiding obstacles…

Cited by 63SourcePDFScholar