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首页> 外文期刊>Journal of Sound and Vibration >Single-camera single-axis vision method applied to measure vibrations
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Single-camera single-axis vision method applied to measure vibrations

机译:用于测量振动的单相单轴视觉方法

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摘要

Increased interest has been witnessed for full-field techniques measuring vibrations. 3D vision methods coupled to two high-speed cameras have proven to be a valid solution to measure 3D displacements, notably with the Stereo Digital Image Correlation (SDIC) tools. The now conventional pseudo-stereo system with a single high-speed camera and a four-mirror adapter, generating two virtual cameras, may also be used, even if it is rather complex to operate and remains limited to small objects. In a logic of simplification of the protocol, the authors present here a set-up requiring a single high-speed camera and no mirrors, with the associated full-field single-axis vision method. The latter is logically designed to measure the vibrations of items whose displacements are locally along a single axis (usually normal to the surface). This paper reports firstly the results of the full-field measurement of the vibrations of a plate, validated by a comparison with those obtained with the four-mirror adapter set-up, and secondly the application to the full-field measurement of the vibrations of a tambourine. Thirdly, the conventional pseudo-stereo technique and the proposed vision method are compared and assessed, in order to establish their respective limits and potential complementarity. Finally, once the application of the method to plane objects is validated, measurements have been carried out on a non-planar object: a bent plate; the results obtained highlight the possibility of using the proposed approach for non-planar surfaces. (C) 2019 Elsevier Ltd. All rights reserved.
机译:针对测量振动的全场技术有望提高兴趣。耦合到两个高速摄像机的3D视觉方法已被证明是一种有效的解决方案来测量3D位移,特别是对于立体声数字图像相关(SDIC)工具。现在,现在使用具有单个高速摄像机和四镜适配器的常规伪立体声系统,也可以使用产生两个虚拟摄像头,即使运行和仍然限制为小物体也相当复杂。在简化协议的逻辑中,作者介绍了一个需要单个高速摄像机和无镜面的设置,具有相关的全场单轴视觉方法。后者逻辑地设计用于测量位移沿单个轴的位移(通常是正常的表面)的物品的振动。本文首先报告了板的振动的全场测量结果,通过与用四镜适配器设置的那些进行验证,并将其应用于振动的全场测量一个手鼓。第三,比较和评估传统的伪立体技术和所提出的视觉方法,以建立各自的限制和潜在的互补性。最后,一旦验证了将该方法应用于平面物体的方法,就在非平面物体上进行了测量:弯曲板;得到的结果突出了使用非平面表面的所提出方法的可能性。 (c)2019 Elsevier Ltd.保留所有权利。

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