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Six‐degree‐of‐freedom generalized displacements measurement based on binocular vision

机译:基于双目视觉的六自由度广义位移测量

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Due to their large flexibility and small damping ratios, harmful vibrations could happen on cables under some external excitations, as for instance the rain-wind-induced vibration, which comes with a translational and rotational coupling. An experimental study of the phenomenon would be quite important in view of an appropriate design. However, the available rotational measurement approaches are not suitable for measuring the rotation of cable, because the installation of such devices alters the structural mechanical properties. Recently, low-cost vision-based structural displacement measurement methods have been widely used due to their flexible deployment and the noncontact measurement feature. But they cannot measure the rotational displacements directly. This paper proposes a rotational generalized displacement measurement method based on a binocular vision assisted by a coded cylinder. The three-dimensional coordinates of the coded points are acquired according to photogrammetry schemes. The cylinder centroid and its direction vector are obtained by a cylindrical fitting. Eventually, the translational and rotational generalized displacements are derived. In the cylinder fitting stage, one optimizes the cylinder model parameters via differential search. Experimental verifications are carried out to demonstrate that the proposed six-degree-of-freedom (6-DOF) generalized displacement measurement is feasible.
机译:由于它们的大灵活性和小阻尼比,在某些外部激励下,电缆上可能会发生有害的振动,例如,雨风引起的振动,该振动伴随平移和旋转耦合。考虑到适当的设计,对该现象进行实验研究将非常重要。但是,可用的旋转测量方法不适用于测量电缆的旋转,因为安装此类设备会改变结构的机械性能。近年来,低成本的基于视觉的结构位移测量方法由于其灵活的部署和非接触式测量功能而被广泛使用。但是它们不能直接测量旋转位移。提出了一种基于双目视觉的编码圆柱体辅助的旋转广义位移测量方法。根据摄影测量方案获取编码点的三维坐标。圆柱质心及其方向矢量是通过圆柱拟合获得的。最终,得出平移和旋转广义位移。在汽缸装配阶段,通过差分搜索优化汽缸模型参数。进行了实验验证,以证明所提出的六自由度(6-DOF)广义位移测量是可行的。

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