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Investigation of Noise Sources in Laser Doppler Vibrometer Measurements.

机译:激光多普勒振动计测量中的噪声源研究。

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摘要

The laser Doppler vibrometer (LDV) is a tool which can detect a Doppler shift induced in a laser beam incident on a vibrating target. This Doppler shift is processed to yield information about the velocity at which the target is vibrating. LDV systems have evolved from custom built laboratory instruments in the late 1960s to widely used, commercially available tools. A particular aspect of LDV systems that has not been thoroughly investigated in a unified manner is the way in which measurement conditions impart noise into the velocity signal. This work investigates several noise sources including target surface roughness, standoff distance, beam focus, angle of incidence, and amplitude-dependent noise. There is little literature dedicated to addressing the consequences of these fundamental noise sources, all of which confront LDV systems in every measurement. The aim of this dissertation is to study these noise sources and contribute meaningful analysis that will be of use to those in the LDV community who are concerned with maximizing measurement quality.;A novel three-dimensional contour scanning LDV measurement system has been developed which allows measurement along vectors relative to the surface normal of the target. This unique system raised issues which motivated the investigation of noise sources in LDV. A new method of looking at the noise field, which considers standoff distance and beam focus, is presented, illustrating the complicated nature of LDV noise. These noise maps provide a starting point to a more detailed investigation of surface roughness effects. Methods for characterizing measurement noise arising from focus error and angle of incidence when the target has a rough surface are proposed and results from experiments performed on surfaces machined to a precise roughness average are used to draw conclusions about the effects of surface roughness.;With LDV, the speckle phenomenon causes increased noise in measurements when the vibration amplitude increases. An experiment to characterize this behavior is presented, the results of which illustrate when this amplitude dependent noise will have potentially adverse effects on the measurement.
机译:激光多普勒振动计(LDV)是一种工具,可以检测入射在振动目标上的激光束中引起的多普勒频移。处理该多普勒频移以产生有关目标振动速度的信息。 LDV系统已从1960年代后期的定制实验室仪器发展成为广泛使用的可商购工具。没有以统一的方式进行彻底研究的LDV系统的特定方面是测量条件将噪声传递给速度信号的方式。这项工作研究了几种噪声源,包括目标表面粗糙度,支座距离,光束聚焦,入射角和振幅相关噪声。很少有文献致力于解决这些基本噪声源的后果,在每次测量中,所有这些噪声源都面对着LDV系统。本文的目的是研究这些噪声源,并为有意义的分析提供有益的分析方法,以供LDV社区中那些致力于使测量质量最大化的人使用。沿着相对于目标表面法线的向量进行测量。这个独特的系统引发了一些问题,这些问题激发了对LDV中噪声源的研究。提出了一种新的观察噪声场的方法,该方法考虑了对峙距离和射束聚焦,说明了LDV噪声的复杂性。这些噪声图为更详细地研究表面粗糙度影响提供了起点。提出了表征目标表面粗糙时由聚焦误差和入射角产生的测量噪声的方法,并使用在加工成精确粗糙度平均值的表面上进行的实验结果得出关于表面粗糙度影响的结论。当振动幅度增加时,斑点现象会导致测量中的噪声增加。提出了表征这种行为的实验,其结果说明了这种依赖于幅度的噪声何时会对测量产生潜在的不利影响。

著录项

  • 作者

    O'Malley, Patrick F.;

  • 作者单位

    The Catholic University of America.;

  • 授予单位 The Catholic University of America.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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