Title of article :
Generalized Camera Calibration Including Fish-Eye Lenses
Author/Authors :
DONALD B. GENNERY، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
A method is described for accurately calibrating cameras including radial lens distortion, by using
known points such as those measured from a calibration fixture. Both the intrinsic and extrinsic parameters are
calibrated in a single least-squares adjustment, but provision is made for including old values of the intrinsic
parameters in the adjustment. The distortion terms are relative to the optical axis, which is included in the model
so that it does not have to be orthogonal to the image sensor plane. These distortion terms represent corrections
to the basic lens model, which is a generalization that includes the perspective projection and the ideal fish-eye
lens as special cases. The position of the entrance pupil point as a function of off-axis angle also is included in the
model. (The complete camera model including all of these effects often is called CAHVORE.) A way of adding
decentering distortion also is described. A priori standard deviations can be used to apply weight to given initial
approximations (which can be zero) for the distortion terms, for the difference between the optical axis and the
perpendicular to the sensor plane, and for the terms representingmovement of the entrance pupil, so that the solution
for these is well determined when there is insufficient information in the calibration data. For the other parameters,
initial approximations needed for the nonlinear least-squares adjustment are obtained in a simple manner from the
calibration data and other known information. (Weight can be given to these also, if desired.) Outliers among the
calibration points that disagree excessively with the other data are removed by means of automatic editing based on
analysis of the residuals. The use of the cameramodel also is described, including partial derivatives for propagating
both from object space to image space and vice versa. These methods were used to calibrate the cameras on the
Mars Exploration Rovers.
Keywords :
camera model , CAHVOR , CAHVORE , Mars Rovers , Camera Calibration , fish-eye lens , entrance pupil , Lens distortion
Journal title :
INTERNATIONAL JOURNAL OF COMPUTER VISION
Journal title :
INTERNATIONAL JOURNAL OF COMPUTER VISION