Detecting and tracking moving objects (DATMO) is an essential component for autonomous driving and transportation. In this paper, we present a computationally low-cost and robust DATMO system which uses as input only 2D laser rangefinder (LRF) information. Due to its low requirements both in sensor needs and computation, our DATMO algorithm is meant to be used in current Autonomous Guided Vehicles (AGVs) to improve their reliability for the cargo transportation tasks at port terminals, advancing towards the next generation of fully autonomous transportation vehicles. Our method follows a Detection plus Tracking paradigm. In the detection step we exploit the minimum information of 2D-LRFs by segmenting the elements of the scene in a model-fr...
Robust navigation systems are of great importance in the field of mobile robotics. In order for a m...
Perception for autonomous drive systems is the most essential function for safe and reliable driving...
Autonomous driving in public roads requires precise localization within the range of few centimeters...
Detecting and tracking moving objects (DATMO) is an essential component for autonomous driving and ...
Detecting and tracking moving objects (DATMO) is an essential component for autonomous driving and t...
The presented paper addresses the problem of detecting and tracking moving objects for autonomous ca...
The main objective of this thesis was the development and evaluation of a Detection and Tracking of ...
In this study, we propose reliable Light Detection and Ranging (LiDAR) mapping and localization via ...
The recent advancement of the autonomous vehicle has raised the need for reliable environmental perc...
PosterInternational audienceIn this paper we have presented a fast algorithm to detect road borders ...
The current state of the art of traffic tracking is based on the use of video, and requires extensiv...
In this thesis, we present three main contributions to laser-based detection and tracking of dynamic...
The development of autonomous surface vessels (ASVs) has seen great progress in the last few years, ...
Today a group of automated guided vehicles at Toyota Material Handling Manufacturing Sweden detect a...
Perceiving or understanding the environment surrounding of a vehicle is a very important step in bui...
Robust navigation systems are of great importance in the field of mobile robotics. In order for a m...
Perception for autonomous drive systems is the most essential function for safe and reliable driving...
Autonomous driving in public roads requires precise localization within the range of few centimeters...
Detecting and tracking moving objects (DATMO) is an essential component for autonomous driving and ...
Detecting and tracking moving objects (DATMO) is an essential component for autonomous driving and t...
The presented paper addresses the problem of detecting and tracking moving objects for autonomous ca...
The main objective of this thesis was the development and evaluation of a Detection and Tracking of ...
In this study, we propose reliable Light Detection and Ranging (LiDAR) mapping and localization via ...
The recent advancement of the autonomous vehicle has raised the need for reliable environmental perc...
PosterInternational audienceIn this paper we have presented a fast algorithm to detect road borders ...
The current state of the art of traffic tracking is based on the use of video, and requires extensiv...
In this thesis, we present three main contributions to laser-based detection and tracking of dynamic...
The development of autonomous surface vessels (ASVs) has seen great progress in the last few years, ...
Today a group of automated guided vehicles at Toyota Material Handling Manufacturing Sweden detect a...
Perceiving or understanding the environment surrounding of a vehicle is a very important step in bui...
Robust navigation systems are of great importance in the field of mobile robotics. In order for a m...
Perception for autonomous drive systems is the most essential function for safe and reliable driving...
Autonomous driving in public roads requires precise localization within the range of few centimeters...