Environment awareness through advanced sensing systems is a major requirement for a mobile robot to operate safely, particularly when the environment is unstructured, as in an outdoor setting. In this paper, a multi-sensory approach is proposed for automatic traversable ground detection using 3D range sensors. Specifically, two classifiers are presented, one based on laser data and one based on stereovision. Both classifiers rely on a self-learning scheme to detect the general class of ground and feature two main stages: an adaptive training stage and a classification stage. In the training stage, the classifier learns to associate geometric appearance of 3D data with class labels. Then, it makes predictions based on past observations. The ...
Most vision-based approaches to mobile robotics suffer from the limitations im-posed by stereo obsta...
Colour Stereo visions are the primary perception system of the most Unmanned Ground Vehicles (UGVs),...
Abstract — Autonomous robot navigation in unstructured outdoor environments is a challenging area of...
Environment awareness through advanced sensing systems is a major requirement for a mobile robot to ...
Reliable assessment of terrain traversability using multi-sensory input is a key issue for driving a...
Reliable assessment of terrain traversability using multi-sensory input is a key issue for driving a...
In natural outdoor settings, advanced perception systems and learning strategies are major requireme...
Autonomous driving is a challenging problem, particularly when the domain is unstructured, as in an ...
Reliable terrain analysis is a key requirement for a mobile robot to operate safely in challenging e...
Autonomous robotic navigation in forested environments is difficult because of the highly variable a...
Autonomous robotic navigation in forested environments is difficult because of the highly variable a...
In this research, adaptive perception for driving automation is discussed so as to enable a vehicle ...
110 pagesAutonomous robotic navigation in unstructured, complex environments requires the robot to r...
Abstract — This paper describes a LIDAR-based perception system for ground robot mobility, consistin...
Abstract. Autonomous navigation in cross-country environments presents many new challenges with resp...
Most vision-based approaches to mobile robotics suffer from the limitations im-posed by stereo obsta...
Colour Stereo visions are the primary perception system of the most Unmanned Ground Vehicles (UGVs),...
Abstract — Autonomous robot navigation in unstructured outdoor environments is a challenging area of...
Environment awareness through advanced sensing systems is a major requirement for a mobile robot to ...
Reliable assessment of terrain traversability using multi-sensory input is a key issue for driving a...
Reliable assessment of terrain traversability using multi-sensory input is a key issue for driving a...
In natural outdoor settings, advanced perception systems and learning strategies are major requireme...
Autonomous driving is a challenging problem, particularly when the domain is unstructured, as in an ...
Reliable terrain analysis is a key requirement for a mobile robot to operate safely in challenging e...
Autonomous robotic navigation in forested environments is difficult because of the highly variable a...
Autonomous robotic navigation in forested environments is difficult because of the highly variable a...
In this research, adaptive perception for driving automation is discussed so as to enable a vehicle ...
110 pagesAutonomous robotic navigation in unstructured, complex environments requires the robot to r...
Abstract — This paper describes a LIDAR-based perception system for ground robot mobility, consistin...
Abstract. Autonomous navigation in cross-country environments presents many new challenges with resp...
Most vision-based approaches to mobile robotics suffer from the limitations im-posed by stereo obsta...
Colour Stereo visions are the primary perception system of the most Unmanned Ground Vehicles (UGVs),...
Abstract — Autonomous robot navigation in unstructured outdoor environments is a challenging area of...