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Optimization of a geometrical calibration procedure for stereoscopic endoscopy systems

机译:立体内窥镜系统的几何校准过程优化

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Stereoscopic video endoscopes are widely used for remote visual inspection and precise three-dimensional (3D)measurements in industrial and biomedical applications. The reconstruction of 3D points from the corresponding imagepoints requires calibration procedure which accuracy affects the measurement uncertainty. We propose to perform anoptimal choice of the calibration technique and the calibration target parameters using the computer simulation at thedesign stage. The effectiveness of this approach is demonstrated via the design of self-developed miniature prism-basedstereoscopic system. We simulated acquisition of the calibration and measurement data using optical design software. Theconventional calibration technique requiring many positions of the flat target with arbitrary displacements and rotationswas compared with another one, which uses the translation stage to provide pure translation of the target. We analyzed theimpact of the translation uncertainty, the number of positions, the number of targets and the uncertainty of image pointcoordinates on the uncertainty of calibration parameters and 3D measurements. We have shown that the second techniquecould provide the same calibration accuracy as the first one with less number of images. The results of computer simulationwere confirmed experimentally using the prototype of the self-developed stereoscopic endoscope. The proposed approachmay be used to optimize calibration techniques and reduce a cost of calibration equipment for various stereoscopicmeasurement systems.
机译:立体视频内窥镜广泛用于远程目视检查和精确的三维(3D)工业和生物医学应用中的测量。从相应图像重建3D点点需要精度影响测量不确定性的校准程序。我们建议执行校准技术的最佳选择和使用计算机仿真的校准目标参数设计阶段。通过基于自我开发的微型棱镜的设计来证明这种方法的有效性立体系统。我们模拟使用光学设计软件采集校准和测量数据。这常规校准技术需要平面目标的许多位置,具有任意位移和旋转与另一个相比,使用翻译阶段提供目标的纯平移。我们分析了这一点翻译不确定性的影响,位置数量,目标数量和图像点的不确定性坐标校准参数的不确定性和3D测量。我们已经表明第二种技术可以提供与具有较少数量图像的校准精度相同的校准精度。计算机仿真结果使用自我开发的立体内窥镜的原型来实验证实。拟议的方法可用于优化校准技术并降低各种立体校准设备的成本测量系统。

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