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A RANSAC based phase noise filtering method for the camera-projector calibration system

期刊

OPTOELECTRONICS LETTERS
卷 18, 期 10, 页码 618-622

出版社

TIANJIN UNIV TECHNOLOGY
DOI: 10.1007/s11801-022-2045-2

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资金

  1. Guangxi Science and Technology Base and Special Talents Program [2018AD19077]
  2. Guangxi Innovation and Driving Development Special Funds Project [AA18118002-3]
  3. Guangxi Natural Science Foundation [2018JA170110]

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This paper proposes a random sample consensus (RANSAC) based plane fitting method to filter the phase noise in camera-projector calibration system. By excluding points with noise, the accuracy of plane fitting is improved. The proposed method is applicable to various two-dimensional calibration patterns, enhancing the flexibility of camera-projector system calibration.
Aiming at the noise disturbance of unwrapping phases of control points in the camera-projector calibration system, a random sample consensus (RANSAC) based plane fitting method is proposed to filter the phase noise in this paper. Different from the classical least squares method using all data, the points with noise will not be used to fit the plane in the proposed RANSAC method, which improves the accuracy of plane fitting. The proposed method suits for any two-dimensional (2D) calibration patterns, such as checkerboard or black dots with white background, which improves the flexibility of camera-projector system calibration.

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