In this paper we describe a mobile camera localization system that is able to accurately estimate the pose of an hand-held camera inside a known urban environment. The work leverages on a pre-computed 3D structure obtained by a hierarchical Structure from Motion pipeline to compute the 2D-3D correspondences needed to orient the camera. The hierarchical cluster structure, given by the SfM, guides the localization process providing accurate and reliable features matching. Experiments in outdoor challenging environments demonstrate the effectiveness of the method compared to a standard image retrieval approach
We propose a system for easily preparing arbitrary wide-area envi-ronments for subsequent real-time ...
The democratization of mobile devices such as smartphones, PDAs or tablet-PCs makes it possible to u...
The democratization of mobile devices such as smartphones, PDAs or tablet-PCs makes it possible to u...
In this paper we describe a mobile camera localization system that is able to accurately estimate th...
Camera systems play a key role in mobile robotics because of their reliability in varied environment...
In this paper we propose a complete system that is able to accurately localize a mobile agent wearin...
This paper describes a work in progress towards the implementation of a complete system that provide...
This paper describes a work in progress towards the implementation of a complete system that provide...
Visual localization, i.e., determining the position and orientation of a vehicle with respect to a m...
We study the image-based localization problem in mobile and vehicular applications. The problem can ...
International audienceAccurate visual localization is a key technology for autonomous navigation. 3D...
This paper proposes a method to estimate a mobile cameras position and orientation by referring to t...
We consider the problem of localizing a novel image in a large 3D model, given that the gravitationa...
We consider the problem of localizing a novel image in a large 3D model, given that the gravitationa...
We consider the problem of localizing a novel image in a large 3D model, given that the gravitationa...
We propose a system for easily preparing arbitrary wide-area envi-ronments for subsequent real-time ...
The democratization of mobile devices such as smartphones, PDAs or tablet-PCs makes it possible to u...
The democratization of mobile devices such as smartphones, PDAs or tablet-PCs makes it possible to u...
In this paper we describe a mobile camera localization system that is able to accurately estimate th...
Camera systems play a key role in mobile robotics because of their reliability in varied environment...
In this paper we propose a complete system that is able to accurately localize a mobile agent wearin...
This paper describes a work in progress towards the implementation of a complete system that provide...
This paper describes a work in progress towards the implementation of a complete system that provide...
Visual localization, i.e., determining the position and orientation of a vehicle with respect to a m...
We study the image-based localization problem in mobile and vehicular applications. The problem can ...
International audienceAccurate visual localization is a key technology for autonomous navigation. 3D...
This paper proposes a method to estimate a mobile cameras position and orientation by referring to t...
We consider the problem of localizing a novel image in a large 3D model, given that the gravitationa...
We consider the problem of localizing a novel image in a large 3D model, given that the gravitationa...
We consider the problem of localizing a novel image in a large 3D model, given that the gravitationa...
We propose a system for easily preparing arbitrary wide-area envi-ronments for subsequent real-time ...
The democratization of mobile devices such as smartphones, PDAs or tablet-PCs makes it possible to u...
The democratization of mobile devices such as smartphones, PDAs or tablet-PCs makes it possible to u...