We propose a topological localization method based on optical flow information. We analyse the statistical characteristics of the optical flow signal and demonstrate that the flow vectors can be used to identify and describe key locations in the environment. The key locations (nodes) correspond to significant scene changes and depth discontinuities. Since optical flow vectors contain position, magnitude and angle information, for each node, we extract low and high order statistical moments of the vectors and use them as descriptors for that node. Once a database of nodes and their corresponding optical flow features is created, the robot can perform topological localization by using the Mahalanobis distance between the current frame and the...
Abstract. This paper presents a bio-inspired approach for optical flow data interpretation based on ...
This paper presents a bio-inspired approach for optical flow data interpretation based on fuzzy infe...
This paper presents a bio-inspired approach for optical flow data interpretation based on fuzzy infe...
We propose a topological localization method based on optical flow information. We analyse the stati...
We propose a topological localization method based on optical flow information. We analyse the stati...
We propose the use of optical flow information as a method for detecting and describing changes in t...
We propose the use of optical flow information as a method for detecting and describing changes in t...
We propose the use of optical flow information as a method for detecting and describing changes in t...
For a mobile robot to perform autonomous tasks it is essential that it can determine its location in...
A method for detecting changes in the environment using only vision sensors is presented. We demonst...
Competent navigation in an environment is a major requirement for an autonomous mobile robot to acco...
One of the main problems of topological localization in a real indoor environment is variations in t...
This paper presents an appearance--based method to automatically determine places from vision data f...
This paper addresses the problem of localization and map construction by a mobile robot in an indoor...
Abstract. This paper presents a bio-inspired approach for optical flow data interpretation based on ...
Abstract. This paper presents a bio-inspired approach for optical flow data interpretation based on ...
This paper presents a bio-inspired approach for optical flow data interpretation based on fuzzy infe...
This paper presents a bio-inspired approach for optical flow data interpretation based on fuzzy infe...
We propose a topological localization method based on optical flow information. We analyse the stati...
We propose a topological localization method based on optical flow information. We analyse the stati...
We propose the use of optical flow information as a method for detecting and describing changes in t...
We propose the use of optical flow information as a method for detecting and describing changes in t...
We propose the use of optical flow information as a method for detecting and describing changes in t...
For a mobile robot to perform autonomous tasks it is essential that it can determine its location in...
A method for detecting changes in the environment using only vision sensors is presented. We demonst...
Competent navigation in an environment is a major requirement for an autonomous mobile robot to acco...
One of the main problems of topological localization in a real indoor environment is variations in t...
This paper presents an appearance--based method to automatically determine places from vision data f...
This paper addresses the problem of localization and map construction by a mobile robot in an indoor...
Abstract. This paper presents a bio-inspired approach for optical flow data interpretation based on ...
Abstract. This paper presents a bio-inspired approach for optical flow data interpretation based on ...
This paper presents a bio-inspired approach for optical flow data interpretation based on fuzzy infe...
This paper presents a bio-inspired approach for optical flow data interpretation based on fuzzy infe...