Abstract. Autonomous navigation in cross-country environments presents many new challenges with respect to more traditional, urban environments. The lack of highly structured components in the scene complicates the design of even basic functionalities such as obstacle detection. In addition to the geometric description of the scene, terrain typing is also an important component of the perceptual system. Recognizing the different classes of terrain and obstacles enables the path planner to choose the most efficient route toward the desired goal. This paper presents new sensor processing algorithms that are suitable for cross-country autonomous navigation. We consider two sensor systems that complement each other in an ideal sensor suite: a c...
Abstract—This paper presents an environment-detection-and-mapping algorithm for autonomous driving t...
Efficient estimation of obstacles is a crucial component in autonomous vehicle navigation. Fusing st...
Reliable assessment of terrain traversability using multi-sensory input is a key issue for driving a...
Obstacle detection and mapping are essential for unmanned autonomous driving. This paper describes b...
Obstacle detection and mapping are essential for unmanned autonomous driving. This paper describes b...
[[abstract]]An effective approach to obstacle detection and avoidance for autonomous land vehicle (A...
[[abstract]]An effective approach to obstacle detection and avoidance for autonomous land vehicle (A...
An effective approach to obstacle detection and avoidance for autonomous land vehicle (ALV) navigati...
In order for an autonomous unmanned ground vehicle (UGV) to drive in off-road terrain at high speeds...
Autonomous driving in off-road environments requires an exceptionally capable sensor system, partic...
In order for an autonomous unmanned ground vehicle (UGV) to drive in off-road terrain at high speeds...
In order for an autonomous unmanned ground vehicle (UGV) to drive in off-road terrain at high speeds...
This paper describes an approach for using several lev-els of data fusion in the domain of autonomou...
Konolige et al.: Mapping, Navigation, and Learning for Off-Road Traversal • 89 The challenge in the ...
This paper describes an approach for using several lev-els of data fusion in the domain of autonomou...
Abstract—This paper presents an environment-detection-and-mapping algorithm for autonomous driving t...
Efficient estimation of obstacles is a crucial component in autonomous vehicle navigation. Fusing st...
Reliable assessment of terrain traversability using multi-sensory input is a key issue for driving a...
Obstacle detection and mapping are essential for unmanned autonomous driving. This paper describes b...
Obstacle detection and mapping are essential for unmanned autonomous driving. This paper describes b...
[[abstract]]An effective approach to obstacle detection and avoidance for autonomous land vehicle (A...
[[abstract]]An effective approach to obstacle detection and avoidance for autonomous land vehicle (A...
An effective approach to obstacle detection and avoidance for autonomous land vehicle (ALV) navigati...
In order for an autonomous unmanned ground vehicle (UGV) to drive in off-road terrain at high speeds...
Autonomous driving in off-road environments requires an exceptionally capable sensor system, partic...
In order for an autonomous unmanned ground vehicle (UGV) to drive in off-road terrain at high speeds...
In order for an autonomous unmanned ground vehicle (UGV) to drive in off-road terrain at high speeds...
This paper describes an approach for using several lev-els of data fusion in the domain of autonomou...
Konolige et al.: Mapping, Navigation, and Learning for Off-Road Traversal • 89 The challenge in the ...
This paper describes an approach for using several lev-els of data fusion in the domain of autonomou...
Abstract—This paper presents an environment-detection-and-mapping algorithm for autonomous driving t...
Efficient estimation of obstacles is a crucial component in autonomous vehicle navigation. Fusing st...
Reliable assessment of terrain traversability using multi-sensory input is a key issue for driving a...