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François Pomerleau

17 accepted papers

2025

UAV-Assisted Self-Supervised Terrain Awareness for Off-Road Navigation

ICRA 2025

Terrain awareness is an essential milestone to enable truly autonomous off-road navigation. Accurately predicting terrain characteristics allows optimizing a vehicle's path against potential hazards. Recent methods use deep neural networks to predict terrain properties in a self-supervised manner, r

Cited by 6SourceScholar
2025

Under Pressure: Altimeter-Aided ICP for 3D Maps Consistency

ICRA 2025

We propose a novel method to enhance the accuracy of the Iterative Closest Point (ICP) algorithm by integrating altitude constraints from a barometric pressure sensor. While ICP is widely used in mobile robotics for Simultaneous Localization and Mapping (SLAM), it is susceptible to drift, especially

Cited by 0SourceScholar
2024

DRIVE: Data-driven Robot Input Vector Exploration

ICRA 2024poster

An accurate motion model is a fundamental component of most autonomous navigation systems. While much work has been done on improving model formulation, no standard protocol exists for gathering empirical data required to train models. In this work, we address this issue by proposing Data-driven Rob…

Cited by 4SourcecodeScholar
2024

Exposing the Unseen: Exposure Time Emulation for Offline Benchmarking of Vision Algorithms

IROS 2024poster

Visual Odometry (VO) is one of the fundamental tasks in computer vision for robotics. However, its performance is deeply affected by High Dynamic Range (HDR) scenes, omnipresent outdoor. While new Automatic-Exposure (AE) approaches to mitigate this have appeared, their comparison in a reproducible m…

Cited by 3SourcecodeScholar
2024

Proprioception Is All You Need: Terrain Classification for Boreal Forests

IROS 2024poster

Recent works in field robotics highlighted the importance of resiliency against different types of terrains. Boreal forests, in particular, are home to many mobility-impeding terrains that should be considered for off-road autonomous navigation. Also, being one of the largest land biomes on Earth, b…

Cited by 4SourcecodeScholar
2024

RTS-GT: Robotic Total Stations Ground Truthing dataset

ICRA 2024poster

Numerous datasets and benchmarks exist to assess and compare Simultaneous Localization and Mapping (SLAM) algorithms. Nevertheless, their precision must follow the rate at which SLAM algorithms improved in recent years. Moreover, current datasets fall short of comprehensive data-collection protocol…

Cited by 3SourcecodeScholar
2024

Saturation-Aware Angular Velocity Estimation: Extending the Robustness of SLAM to Aggressive Motions*

ICRA 2024poster

We propose a novel angular velocity estimation method to increase the robustness of Simultaneous Localization And Mapping (SLAM) algorithms against gyroscope saturations induced by aggressive motions. Field robotics expose robots to various hazards, including steep terrains, landslides, and staircas…

Cited by 4SourcecodeScholar
2023

Extrinsic calibration for highly accurate trajectories reconstruction

ICRA 2023poster

In the context of robotics, accurate ground-truth positioning is the cornerstone for the development of mapping and localization algorithms. In outdoor environments and over long distances, total stations provide accurate and precise measurements, that are unaffected by the usual factors that deteri…

Cited by 7SourcecodeScholar
2023

MaskBEV: Joint Object Detection and Footprint Completion for Bird's-Eye View 3D Point Clouds

IROS 2023poster

Recent works in object detection in LiDAR point clouds mostly focus on predicting bounding boxes around objects. This prediction is commonly achieved using anchor-based or anchor-free detectors that predict bounding boxes, requiring significant explicit prior knowledge about the objects to work prop…

Cited by 0SourcecodeScholar
2023

Uncertainty Analysis for Accurate Ground Truth Trajectories with Robotic Total Stations

IROS 2023poster

In the context of robotics, accurate ground truth positioning is essential for the development of Simultaneous Localization and Mapping (SLAM) and control algorithms. Robotic Total Stations (RTSs) provide accurate and precise reference positions in different types of outdoor environments, especially…

Cited by 5SourcecodeScholar
2022

Instance Segmentation for Autonomous Log Grasping in Forestry Operations

IROS 2022poster

Wood logs picking is a challenging task to automate. Indeed, logs usually come in cluttered configurations, randomly orientated and overlapping. Recent work on log picking automation usually assume that the logs' pose is known, with little consideration given to the actual perception problem. In thi…

Cited by 36SourcecodeScholar
2021

Dynamic Lambda-Field: A Counterpart of the Bayesian Occupancy Grid for Risk Assessment in Dynamic Environments

IROS 2021poster

In the context of autonomous vehicles, one of the most crucial tasks is to estimate the risk of the undertaken action. While navigating in complex urban environments, the Bayesian occupancy grid is one of the most popular types of maps, where the information of occupancy is stored as the probability…

Cited by 7SourceScholar
2019

Lambda-Field: A Continuous Counterpart of the Bayesian Occupancy Grid for Risk Assessment

IROS 2019poster

In a context of autonomous robots, one of the most important tasks is to ensure the safety of the robot and its surrounding. The risk of navigation is usually said to be the probability of collision. This notion of risk is not well defined in the literature, especially when dealing with occupancy gr…

Cited by 16SourceScholar
2019

Lidar Measurement Bias Estimation via Return Waveform Modelling in a Context of 3D Mapping

ICRA 2019poster

In a context of 3D mapping, it is very important to obtain accurate measurements from sensors. In particular, Light Detection And Ranging (LIDAR) measurements are typically treated as a zero-mean Gaussian distribution. We show that this assumption leads to predictable localisation drifts, especially…

Cited by 49SourceScholar
2016

The line leading the blind: Towards nonvisual localization and mapping for tethered mobile robots

ICRA 2016

Mobile robots supported by an electromechanical tether can safely explore extremely rugged terrain in resource-limited environments. While a tether provides power, wired communication, and support on steep surfaces, it also reduces maneuverability; in cluttered environments the tether will contact o

Cited by 11SourceScholar