Feature extraction is a central step of processing Light Detection and Ranging (LIDAR) data. Existing detectors tend to exploit characteristics of specific environments: corners and lines from indoor (rectilinear) environments, and trees from outdoor environments. While these detectors work well in their intended environments, their performance in different environments can be poor. We describe a general purpose feature detector for both 2D and 3D LIDAR data that is applicable to virtually any environment. Our method adapts classic feature detection methods from the image processing literature, specifically the multi-scale Kanade-Tomasi corner detector. The resulting method is capable of identifying highly stable and repeatable features at ...
In order for autonomous vehicles to achieve life-long operation in outdoor environments, navigation ...
Light detection and ranging (LiDAR) is widely used in the automotive industry as it can provide poin...
Light-weight and accurate mapping is made possible by high-level feature extraction from sensor read...
Abstract—The detection of features from Light Detection and Ranging (LIDAR) data is a fundamental co...
Recent advances in airborne Light Detection and Ranging (LIDAR) technology allow rapid and inexpensi...
AbstractHere we present a novel, histogram-based salient point feature detector that may naturally b...
Here we present a novel, histogram-based salient point feature detector that may naturally be applie...
Accurate positioning of vehicles plays an important role in autonomous driving. In our previous rese...
In this paper, we propose a new method for 3D terrestrial laser range data classifications. This fun...
International audienceThis paper presents a new feature based approach for place recognition using 2...
Sensing environments and data analysis are basic and important abilities that autonomous navigation ...
We present an innovative way to autonomously classify LiDAR points into bare earth, building, vegeta...
Light Detection and Ranging, (LiDAR) presents a series of unique challenges, the foremost of these b...
textLight Detection and Ranging (Lidar) is a remote sensing technique that provides high resolution ...
Abstract. Terrain classification is a fundamental task in outdoor robot naviga-tion to detect and av...
In order for autonomous vehicles to achieve life-long operation in outdoor environments, navigation ...
Light detection and ranging (LiDAR) is widely used in the automotive industry as it can provide poin...
Light-weight and accurate mapping is made possible by high-level feature extraction from sensor read...
Abstract—The detection of features from Light Detection and Ranging (LIDAR) data is a fundamental co...
Recent advances in airborne Light Detection and Ranging (LIDAR) technology allow rapid and inexpensi...
AbstractHere we present a novel, histogram-based salient point feature detector that may naturally b...
Here we present a novel, histogram-based salient point feature detector that may naturally be applie...
Accurate positioning of vehicles plays an important role in autonomous driving. In our previous rese...
In this paper, we propose a new method for 3D terrestrial laser range data classifications. This fun...
International audienceThis paper presents a new feature based approach for place recognition using 2...
Sensing environments and data analysis are basic and important abilities that autonomous navigation ...
We present an innovative way to autonomously classify LiDAR points into bare earth, building, vegeta...
Light Detection and Ranging, (LiDAR) presents a series of unique challenges, the foremost of these b...
textLight Detection and Ranging (Lidar) is a remote sensing technique that provides high resolution ...
Abstract. Terrain classification is a fundamental task in outdoor robot naviga-tion to detect and av...
In order for autonomous vehicles to achieve life-long operation in outdoor environments, navigation ...
Light detection and ranging (LiDAR) is widely used in the automotive industry as it can provide poin...
Light-weight and accurate mapping is made possible by high-level feature extraction from sensor read...