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January 1, 19992,615 citations

Flexible camera calibration by viewing a plane from unknown orientations

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ZZZhengyou Zhang

Key Points

  • To introduce an accessible and flexible camera calibration technique using an unconstrained planar pattern observed from multiple unknown orientations.
  • Observed a planar pattern positioned at two or more arbitrary orientations without requiring knowledge of camera or pattern motion.
  • Formulated an initial closed-form algebraic solution incorporating radial lens distortion models, followed by maximum likelihood nonlinear optimization.
  • Validated calibration accuracy and stability across both synthetic simulations and real-world image datasets.
  • Successfully recovered intrinsic camera parameters and modeled radial lens distortion without specialized apparatus or orthogonal calibration planes.
  • Achieved high-precision calibration under unconstrained camera motion, transitioning calibration procedures from laboratory environments to real-world applications.

Abstract

Proposes a flexible new technique to easily calibrate a camera. It only requires the camera to observe a planar pattern shown at a few (at least two) different orientations. Either the camera or the planar pattern can be freely moved. The motion need not be known. Radial lens distortion is modeled. The proposed procedure consists of a closed-form solution followed by a nonlinear refinement based on the maximum likelihood criterion. Both computer simulation and real data have been used to test the proposed technique, and very good results have been obtained. Compared with classical techniques which use expensive equipment, such as two or three orthogonal planes, the proposed technique is easy to use and flexible. It advances 3D computer vision one step from laboratory environments to real-world use. The corresponding software is available from the author's Web page ().

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Cite This Study

Zhengyou Zhang (1999) studied this question.

synapsesocial.com/papers/6a08de9934cfc5f8bc5b6f00https://doi.org/10.1109/iccv.1999.791289
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