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Visual Compass Methods for Robot Navigation

Andrew Burke, Andrew Vardy, Eng

Year
2006
Citations
4

Abstract

A compass based purely on visual information would be a useful navigational tool for robots working in environments where magnetic and GPS compass information is not available. A visual compass processes a pair of panoramic images taken from two different positions and estimates the orientation change between them. We present in this paper several well known algorithms useful for the development of a visual compass. These methods include a search for the minimum image distance in orientation space, a refined search method, and a frequency-domain approach known as phase correlation. A comparison on efficiency and effectiveness of these algorithms and their variations is given. We find that the refined search method exhibits improved efficiency with only a marginal impact on accuracy. The phase correlation method performed almost as well for small distances, but for large distances, the accuracy decreased significantly.

Keywords

CompassComputer visionArtificial intelligenceOrientation (vector space)Computer scienceGlobal Positioning SystemVisual searchMathematicsGeographyCartography

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