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Continuous Scanning Laser Vibrometry for Measurements on Rotating Structures

机译:连续扫描激光振动测量用于旋转结构的测量

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It is readily accepted that a Laser Vibrometer measures target velocity in the direction of the incident laser beam but it is essential that, for correct measurement interpretation, the target velocity be considered in terms of the various target motion components. This paper begins with a review of the theoretical description of the velocity sensed by a dual mirror scanning Laser Vibrometer incident in an arbitrary direction on a rotating target of flexible cross-section undergoing arbitrary vibration. This comprehensive velocity sensitivity model can be applied to any Laser Vibrometer measurement configuration on any target and is sufficiently versatile to incorporate time dependent beam orientation. This is described in this paper with particular reference to continuous circular scanning Laser Doppler Vibrometry. The velocity sensitivity model allows a detailed analysis of the form of the measurement that is obtained in actual scan configurations. For example, additional components occur in a circular scanning Laser Vibrometer measurement on a rotating target that can be shown to be due to a combination of instrument configuration and target misalignment. In this paper, the measured data obtained from a circular scanning measurement on a rotating target undergoing axial vibration is investigated as a means of demonstrating the usefulness of the comprehensive velocity sensitivity model.
机译:易于接受激光振动计测量入射激光束的方向上的目标速度,但是对于正确的测量解释,必须根据各种目标运动组件考虑目标速度。本文首先回顾了由在经历任意横截面的旋转目标的任意方向上入射的双镜扫描激光振动计的速度描述的速度描述。该综合速度灵敏度模型可以应用于任何目标的任何激光振动计测量配置,并且足以多功能以结合时间依赖的光束方向。本文在本文中描述了这一点,特别参考连续圆形扫描激光多普勒振动器。速度灵敏度模型允许详细分析实际扫描配置中获得的测量形式。例如,在旋转目标上的循环扫描激光振动计测量中发生附加组件,该旋转目标可以被示出是由于仪器配置和目标未对准的组合。在本文中,研究了从经历轴向振动的旋转目标上的圆形扫描测量获得的测量数据作为展示综合速度灵敏度模型的有用性的方法。

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