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Transfer Functions to Measure Translational and Rotational Velocities with Continuous-Scan Laser Doppler Vibrometry

机译:传递函数测量连续扫描激光多普勒振动器的平移和旋转速度

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A laser Doppler vibrometer typically measures the translational velocity at a single point along the direction of incident light. However, it has been shown that rotational velocities can also be recovered by scanning the laser continuously along a line or circular path around that point. This work uses the harmonic transfer function concept, which is analogous to the transfer function in conventional modal analysis, to relate the measured rotational and translational velocities to the input force. With this concept, the continuous-scan approach can be combined with the conventional point by point scan approach, acquiring normalized translational and rotational velocities under various types of excitation conditions in the same amount of time that is required for obtaining only the translational velocity. The proposed approach is validated on measurements taken from a downhill ski under free-free boundary conditions. The influence of the circle size, the scanning rate and the surface quality on the noise level in the measured signal is discussed, and the measured deflection shapes using both the point and circular scan approaches are compared. Local slopes at measurement locations are computed from the identified principal rotational velocities, laying the foundation for constructing a much more accurate estimate of the deformation shape, which may be valuable in damage detection and/or model updating.
机译:激光多普勒振动计通常在沿着入射光方向上测量单点的平移速度。然而,已经示出了通过沿着该点周围的线或圆形路径连续扫描激光,也可以通过扫描激光来恢复旋转速度。这项工作采用了谐波传递函数概念,它类似于传统模态分析中的传递函数,将测量的旋转和平移速度与输入力相关联。利用这种概念,通过点扫描方法可以与传统点相同,在获得仅获得平移速度所需的相同时间的各种类型的激励条件下获取归一化的平移和旋转速度。在自由边界条件下从下坡滑雪中取出的测量验证了所提出的方法。讨论了圆尺寸,扫描速率和表面质量对测量信号中噪声水平的影响,并且比较了使用点和圆扫描方法的测量偏转形状。测量位置处的局部斜率从所识别的主要旋转速度计算,奠定了构造更准确的变形形状的准确估计的基础,这在损坏检测和/或模型更新中可能是有价值的。

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