Article ID Journal Published Year Pages File Type
525614 Computer Vision and Image Understanding 2015 11 Pages PDF
Abstract

•Survey of depth-colour calibration methods.•Novel calibration method based on projective alignment.•Indepth experimental validation and error analysis.•Alignment of time-of-flight and colour camera networks.

Time-of-flight cameras provide depth information, which is complementary to the photometric appearance of the scene in ordinary images. It is desirable to merge the depth and colour information, in order to obtain a coherent scene representation. However, the individual cameras will have different viewpoints, resolutions and fields of view, which means that they must be mutually calibrated. This paper presents a geometric framework for the resulting multi-view and multi-modal calibration problem. It is shown that three-dimensional projective transformations can be used to align depth and parallax-based representations of the scene, with or without Euclidean reconstruction. A new evaluation procedure is also developed; this allows the reprojection error to be decomposed into calibration and sensor-dependent components. The complete approach is demonstrated on a network of three time-of-flight and six colour cameras. The applications of such a system, to a range of automatic scene-interpretation problems, are discussed.

Related Topics
Physical Sciences and Engineering Computer Science Computer Vision and Pattern Recognition
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