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Three-dimensional full-field vibration measurements using a handheld single-point laser Doppler vibrometer

机译:使用手持式单点激光多普勒振动计进行三维全场振动测量

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The laser Dopper vibrometer (LDV) has become a standard instrument to perform high spatial resolution 3D vibration measurements of complex structures. An important step in the LDV measurement procedure is the estimation of the pose of the instrument relative to the test object. Existing LDV pose estimation methods rely on the use of 3D range sensors to perform this task. These sensors are costly and often their spatial resolution and accuracy is too limited for an accurate LDV pose estimation. But most importantly, existing LDV pose estimation techniques are slow. In this paper, we present a novel LDV pose estimation method based on matching of a 2D camera image and a CAD model of the test object. In contrast to existing pose estimation techniques, our method is able to track the pose of the LDV in real-time (up to about 30 LDV positions per second). This means that our method also allows LDV pose estimation when either the LDV or the object is moving. Using the real-time LDV pose tracking we present a new LDV measurement methodology where we hold instrument in our hand while moving around the test structure. This allows us to perform full-field scanning and 3D velocity measurements with a low-cost single point LDV sensor. We show that the measurement accuracy of a stationary handheld LDV measurement is about 40 dB (which is about 10 dB lower than in the case of measurements on a tripod). Furthermore, we demonstrate that the 3D vibrations measurements using the handheld vibrometer have an error of about 20% compared to classical measurements performed by combining three LDV measurements on a tripod. We illustrate our method on vibration measurements of a composite bicycle frame. (C) 2019 Elsevier Ltd. All rights reserved.
机译:激光多普勒振动计(LDV)已成为执行复杂结构的高空间分辨率3D振动测量的标准仪器。 LDV测量程序中的一个重要步骤是估计仪器相对于测试对象的姿态。现有的LDV姿态估计方法依赖于3D距离传感器的使用来执行此任务。这些传感器价格昂贵,并且对于精确的LDV姿态估计而言,它们的空间分辨率和精度常常受到限制。但是最重​​要的是,现有的LDV姿态估计技术很慢。在本文中,我们提出了一种基于2D摄像机图像和测试对象的CAD模型匹配的新型LDV姿态估计方法。与现有的姿态估计技术相比,我们的方法能够实时跟踪LDV的姿态(每秒最多约30个LDV位置)。这意味着当LDV或物体移动时,我们的方法也允许LDV姿势估计。通过使用实时LDV姿态跟踪,我们提出了一种新的LDV测量方法,当我们在测试结构周围移动时,可以将仪器握在手中。这使我们能够使用低成本的单点LDV传感器执行全场扫描和3D速度测量。我们显示固定的手持式LDV测量的测量精度约为40 dB(比在三脚架上测量的测量精度低约10 dB)。此外,我们证明,与通过在三脚架上组合三个LDV测量值进行的经典测量相比,使用手持式振动计进行的3D振动测量具有约20%的误差。我们说明了一种用于测量复合自行车车架振动的方法。 (C)2019 Elsevier Ltd.保留所有权利。

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